Files
SIME/test/SIME_chemplot_tSNE.ipynb
mm644706215 ea218a3a39 update
2025-10-16 17:26:35 +08:00

6421 lines
873 KiB
Plaintext
Executable File
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
{
"cells": [
{
"cell_type": "markdown",
"metadata": {},
"source": [
"micromamba create -n qsar -c rdkit -c mordred-descriptor -c conda-forge rdkit numpy mordred scikit-learn pandas matplotlib padelpy fuzzywuzzy optuna hydra-core ipykernel loguru ipython joblib openbabel mopac rdkit jupyter ipykernel chemplot joblib -y"
]
},
{
"cell_type": "code",
"execution_count": 1,
"metadata": {},
"outputs": [],
"source": [
"from pathlib import Path\n",
"from rdkit import Chem\n",
"\n",
"dir = '../LIBRARIES/'\n",
"\n",
"file = '2025-02-26-05-38-39_mcrl_1.smiles'\n",
"\n",
"smifile = Path(dir) / file\n",
"\n",
"smiles_list = Path(smifile).read_text().splitlines()"
]
},
{
"cell_type": "code",
"execution_count": 2,
"metadata": {},
"outputs": [
{
"data": {
"text/plain": [
"250001"
]
},
"execution_count": 2,
"metadata": {},
"output_type": "execute_result"
}
],
"source": [
"len(smiles_list)"
]
},
{
"cell_type": "code",
"execution_count": 3,
"metadata": {},
"outputs": [
{
"data": {
"text/plain": [
"'O=C1C[C@@H](O)C[C@H](O[C@@H]9O[C@H](C)C[C@@H]([C@H]9O)N(C)C)[C@@](O)(C)CC(=O)C(=O)/C=C/[C@@H](C)=C/[C@@H](O)[N@@](C)O1'"
]
},
"execution_count": 3,
"metadata": {},
"output_type": "execute_result"
}
],
"source": [
"smiles_list[-1]"
]
},
{
"cell_type": "code",
"execution_count": 4,
"metadata": {},
"outputs": [
{
"data": {
"text/plain": [
"'O=C1C[C@@H](O)C[C@H](O[C@H]9C[C@@](C)(OC)[C@@H](O)[C@H](C)O9)[C@@H](C)C[C@@H](C)C(=O)/C=C/[C@@H](CC)=C/[C@H](O[C@H]9C[C@@](C)(OC)[C@@H](O)[C@H](C)O9)[C@@H](CC)O1'"
]
},
"execution_count": 4,
"metadata": {},
"output_type": "execute_result"
}
],
"source": [
"smiles_list[0]"
]
},
{
"cell_type": "markdown",
"metadata": {},
"source": [
"## Plotter 对象的构造\n",
"\n",
"从 SMILES 构造 Plotter\n",
"ChemPlot 的核心是一个 Plotter 类,它负责计算分子描述符、选择特征以及执行降维。通过 Plotter.from_smiles() 方法,可以直接从 SMILES 字符串列表中构造一个 Plotter 对象同时传入相应的目标值如二元标签和目标类型此例中为“C”代表分类任务。\n",
"\n",
"分子描述符:\n",
"在构造过程中ChemPlot 使用了 mordred 库来计算每个分子的描述符。这些描述符是分子各类物理化学性质的数值表示,经过计算后再结合目标值进行特征选择,以便后续降维处理。\n",
"\n"
]
},
{
"cell_type": "code",
"execution_count": 5,
"metadata": {},
"outputs": [
{
"name": "stderr",
"output_type": "stream",
"text": [
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:57] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:58] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:19:59] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:00] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:01] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:02] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:03] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:04] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:05] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:06] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:07] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:08] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:09] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:10] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:11] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:12] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:13] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 28 N, 4, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:14] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:15] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 N, 4, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:16] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n",
"[15:20:17] Explicit valence for atom # 29 C, 5, is greater than permitted\n"
]
},
{
"ename": "",
"evalue": "",
"output_type": "error",
"traceback": [
"\u001b[1;31m在当前单元格或上一个单元格中执行代码时 Kernel 崩溃。\n",
"\u001b[1;31m请查看单元格中的代码以确定故障的可能原因。\n",
"\u001b[1;31m单击<a href='https://aka.ms/vscodeJupyterKernelCrash'>此处</a>了解详细信息。\n",
"\u001b[1;31m有关更多详细信息请查看 Jupyter <a href='command:jupyter.viewOutput'>log</a>。"
]
}
],
"source": [
"from pathlib import Path\n",
"from concurrent.futures import ProcessPoolExecutor\n",
"from rdkit import Chem\n",
"from chemplot import Plotter\n",
"\n",
"def validate_smiles(smi):\n",
" \"\"\"检查单个 SMILES 是否有效,返回有效的 SMILES否则返回 None\"\"\"\n",
" return smi if Chem.MolFromSmiles(smi) is not None else None\n",
"\n",
"# 使用多进程并行检查 SMILES\n",
"with ProcessPoolExecutor() as executor:\n",
" results = list(executor.map(validate_smiles, smiles_list))\n",
"\n",
"# 过滤掉无效的 SMILES\n",
"valid_smiles = [smi for smi in results if smi is not None]\n",
"\n",
"# 构造 Plotter 对象\n",
"cp = Plotter.from_smiles(smiles_list=valid_smiles)\n"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [
{
"data": {
"text/plain": [
"42641"
]
},
"execution_count": 16,
"metadata": {},
"output_type": "execute_result"
}
],
"source": [
"len(valid_smiles)"
]
},
{
"cell_type": "markdown",
"metadata": {},
"source": [
"## 4. 降维方法\n",
"\n",
"由于描述符往往维度很高,而可视化通常需要二维数据,因此 ChemPlot 提供了几种常用的降维算法:\n",
"\n",
"t-SNE (t-Distributed Stochastic Neighbor Embedding)\n",
"\n",
"特点:是一种非线性降维算法,擅长保持局部结构(即相似的样本在降维后仍然靠近)。\n",
"用途:适合用于展示数据中的聚类结构和局部关系。\n",
"参考:文献 [2] 提供了 t-SNE 的详细理论背景。\n",
"PCA (Principal Component Analysis)\n",
"\n",
"特点:一种线性降维方法,通过计算数据中的主成分(即最大方差方向)来实现降维。\n",
"用途:常用于数据预处理和初步探索,能直观展示数据的主要变化趋势。\n",
"参考:经典文献 [3] 介绍了 PCA 的基本原理。\n",
"UMAP (Uniform Manifold Approximation and Projection)\n",
"\n",
"特点:兼具保持局部和全局结构的能力,速度较快,近年来越来越受到关注。\n",
"用途:适用于大规模数据集的降维,并能生成结构清晰的二维或三维嵌入。\n",
"参考:文献 [4] 详细讨论了 UMAP 的算法原理和应用。\n",
"\n",
"[2]van der Maaten, Laurens, Hinton, Geoffrey. (2008). Viualizingdata using t-SNE. Journal of Machine Learning Research. 9. 2579-2605.\n",
"\n",
"[3]Wold, S., Esbensen, K., Geladi, P. (1987). Principal component analysis. Chemometrics and intelligent laboratory systems. 2(1-3). 37-52.\n",
"\n",
"[4]McInnes, L., Healy, J., Melville, J. (2018). Umap: Uniform manifold approximation and projection for dimension reduction. arXivpreprint arXiv:1802.03426."
]
},
{
"cell_type": "markdown",
"metadata": {},
"source": [
"t-SNEt分布随机邻域嵌入是一种常用的非线性降维算法主要用于将高维数据映射到二维或三维空间便于直观地展示数据的聚类结构和局部关系。以下是对 t-SNE 的详细介绍:\n",
"\n",
"1. 基本原理\n",
"相似性概率分布\n",
"t-SNE 首先在高维空间中为每个数据点计算与其他点的相似性概率分布通常使用高斯分布来衡量相似性。之后在低维空间中t-SNE 用 t-分布(自由度较低的分布)来构建相似性度量。\n",
"目标函数\n",
"算法的目标是最小化高维和低维相似性分布之间的差异,这通常通过最小化 KullbackLeibler (KL) 散度来实现。这样可以确保那些在高维空间中彼此相近的数据点,在低维空间中也保持紧密。\n",
"2. 局部结构保留\n",
"重视局部邻域\n",
"t-SNE 特别注重保持数据的局部结构。也就是说,如果两个数据点在高维空间中相似(即彼此是邻居),它们在低维嵌入中也会尽量靠得更近。\n",
"聚类展示\n",
"这种局部保留特性使得 t-SNE 在展示数据簇clusters时非常直观各个簇在图中通常会呈现出明显的分离状态。\n",
"3. 坐标的意义\n",
"抽象表示\n",
"t-SNE 得到的二维(或三维)坐标并不对应于任何具体的物理量或原始特征,而是一种“抽象空间”坐标。你可以把它们看作是数据在低维空间中的新表达形式,主要反映了数据点之间的相似性关系。\n",
"相对关系\n",
"关注重点在于点与点之间的相对距离和聚集情况,而不是具体的坐标数值。不同的运行(因随机初始化和参数设置不同)可能会产生不同的坐标值,但总体的聚类结构往往保持一致。\n",
"4. 参数调节与影响\n",
"困惑度Perplexity\n",
"这个参数控制每个数据点考虑多少邻居,通常取值范围在 5 到 50 之间。较低的困惑度更关注局部结构,而较高的困惑度则可以保留更多全局信息。\n",
"学习率和迭代次数\n",
"适当的学习率和足够的迭代次数有助于收敛到稳定的低维嵌入。参数设置的不同可能会导致 t-SNE 结果的细微差异。\n",
"5. 优点与局限性\n",
"优点\n",
"\n",
"非常适合揭示数据中的非线性结构和聚类模式;\n",
"在视觉上能够清晰地展示数据点之间的相似性和局部关系。\n",
"局限性\n",
"\n",
"低维坐标没有实际的物理意义,不能直接解释每个轴代表的具体属性;\n",
"算法对参数和随机初始化比较敏感,不同运行可能导致不同结果;\n",
"计算复杂度较高,对于大规模数据集处理可能较慢。\n"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [
{
"name": "stderr",
"output_type": "stream",
"text": [
"/root/micromamba/envs/frage/lib/python3.10/site-packages/chemplot/chemplot.py:455: UserWarning: No artists with labels found to put in legend. Note that artists whose label start with an underscore are ignored when legend() is called with no argument.\n",
" plot.legend(markerscale=size * 0.19)\n"
]
},
{
"data": {
"text/plain": [
"<Axes: label='scatter', title={'center': 't-SNE plot'}, xlabel='t-SNE-1', ylabel='t-SNE-2'>"
]
},
"execution_count": 17,
"metadata": {},
"output_type": "execute_result"
},
{
"data": {
"image/png": "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",
"text/plain": [
"<Figure size 2000x2000 with 1 Axes>"
]
},
"metadata": {},
"output_type": "display_data"
}
],
"source": [
"import matplotlib.pyplot as plt\n",
"cp.tsne()\n",
"cp.visualize_plot()"
]
},
{
"cell_type": "markdown",
"metadata": {},
"source": [
"## UMAPUniform Manifold Approximation and Projection\n",
"\n",
"非线性降维\n",
"UMAP 通过构建数据的局部邻域图,并在此基础上学习数据的流形结构,从而实现降维。它不仅考虑局部数据的关系,还能兼顾全局结构。\n",
"\n",
"局部与全局平衡\n",
"UMAP 能够更好地保留局部相似性,同时在一定程度上维持全局数据的布局,使得降维结果在可视化时往往能呈现出明显的簇结构和连续性。\n",
"\n",
"参数调节\n",
"UMAP 有一些关键参数(如 n_neighbors、min_dist、以及距离度量方式这些参数可以调节降维结果\n",
"\n",
"n_neighbors 控制局部邻域的大小,影响局部结构捕捉的精细程度。\n",
"min_dist 则决定数据点在低维空间中聚集的紧密程度,较小的值会让簇内点更紧密。\n",
"抽象坐标\n",
"降维后得到的 UMAP 坐标并没有直接的物理意义,而是反映了高维空间中样本间的相似性和数据流形结构。"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [
{
"name": "stderr",
"output_type": "stream",
"text": [
"/root/micromamba/envs/frage/lib/python3.10/site-packages/sklearn/utils/deprecation.py:151: FutureWarning: 'force_all_finite' was renamed to 'ensure_all_finite' in 1.6 and will be removed in 1.8.\n",
" warnings.warn(\n",
"/root/micromamba/envs/frage/lib/python3.10/site-packages/chemplot/chemplot.py:455: UserWarning: No artists with labels found to put in legend. Note that artists whose label start with an underscore are ignored when legend() is called with no argument.\n",
" plot.legend(markerscale=size * 0.19)\n"
]
},
{
"data": {
"text/plain": [
"<Axes: label='scatter', title={'center': 'UMAP plot'}, xlabel='UMAP-1', ylabel='UMAP-2'>"
]
},
"execution_count": 18,
"metadata": {},
"output_type": "execute_result"
},
{
"data": {
"image/png": "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",
"text/plain": [
"<Figure size 2000x2000 with 1 Axes>"
]
},
"metadata": {},
"output_type": "display_data"
}
],
"source": [
"cp.umap()\n",
"cp.visualize_plot()"
]
},
{
"cell_type": "markdown",
"metadata": {},
"source": [
"## PCA主成分分析\n",
"\n",
"线性降维\n",
"PCA 通过计算数据的协方差矩阵,提取出“主成分”,也就是数据方差最大的方向。这些主成分是原始特征的线性组合。\n",
"\n",
"全局结构\n",
"PCA 保留的是全局数据的方差信息,能够解释数据中大部分的变异性,适合用来理解数据的总体趋势。\n",
"\n",
"可解释性\n",
"每个主成分都有明确的解释意义,例如第一主成分捕捉了最多的方差;而后续主成分依次解释剩余的方差比例。\n",
"但需要注意,降维后的坐标虽然由主成分构成,但它们并非直接对应于某个具体的物理或化学属性,而是数据整体变化趋势的抽象表示。\n",
"\n",
"局限性\n",
"由于 PCA 是线性方法,面对高度非线性的数据结构时,可能无法充分捕捉局部复杂的关系。"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [
{
"name": "stderr",
"output_type": "stream",
"text": [
"/root/micromamba/envs/frage/lib/python3.10/site-packages/chemplot/chemplot.py:455: UserWarning: No artists with labels found to put in legend. Note that artists whose label start with an underscore are ignored when legend() is called with no argument.\n",
" plot.legend(markerscale=size * 0.19)\n"
]
},
{
"data": {
"text/plain": [
"<Axes: label='scatter', title={'center': 'PCA plot'}, xlabel='PC-1 (47%)', ylabel='PC-2 (19%)'>"
]
},
"execution_count": 19,
"metadata": {},
"output_type": "execute_result"
},
{
"data": {
"image/png": "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",
"text/plain": [
"<Figure size 2000x2000 with 1 Axes>"
]
},
"metadata": {},
"output_type": "display_data"
}
],
"source": [
"import matplotlib.pyplot as plt\n",
"cp.pca()\n",
"cp.visualize_plot()"
]
},
{
"cell_type": "markdown",
"metadata": {},
"source": []
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [],
"source": []
}
],
"metadata": {
"kernelspec": {
"display_name": "frage",
"language": "python",
"name": "python3"
},
"language_info": {
"codemirror_mode": {
"name": "ipython",
"version": 3
},
"file_extension": ".py",
"mimetype": "text/x-python",
"name": "python",
"nbconvert_exporter": "python",
"pygments_lexer": "ipython3",
"version": "3.10.16"
}
},
"nbformat": 4,
"nbformat_minor": 2
}