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Charge and bond order-based similarity analysis of pi-conjugated organic molecules

Charge and bond order-based similarity analysis of pi-conjugated organic molecules. Valentin Monev Institute of Organic Chemistry with Center of Phytochemistry Bulgarian Academy of Sciences. introduction. introduction. we introduce the similarity concept into quantum chemistry.

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Charge and bond order-based similarity analysis of pi-conjugated organic molecules

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  1. Charge and bond order-based similarity analysis of pi-conjugated organic molecules Valentin Monev Institute of Organic Chemistry with Center of Phytochemistry Bulgarian Academy of Sciences

  2. introduction

  3. introduction

  4. we introduce the similarity concept into quantum chemistry Fratev, F., O. E. Polansky, A. Mehlhorn and V. Monev (1979). Application of distance and similarity measures - comparison of molecular electronic structures in arbitrary electronic states. J. Mol. Struct. 56(2): 245-253

  5. we introduce the similarity concept into quantum chemistry Fratev, F., O. E. Polansky, A. Mehlhorn and V. Monev (1979). Application of distance and similarity measures - comparison of molecular electronic structures in arbitrary electronic states. J. Mol. Struct. 56(2): 245-253

  6. we introduce the similarity concept into quantum chemistry Fratev, F., O. E. Polansky, A. Mehlhorn and V. Monev (1979). Application of distance and similarity measures - comparison of molecular electronic structures in arbitrary electronic states. J. Mol. Struct. 56(2): 245-253

  7. we introduce the similarity concept into quantum chemistry Fratev, F., O. E. Polansky, A. Mehlhorn and V. Monev (1979). Application of distance and similarity measures - comparison of molecular electronic structures in arbitrary electronic states. J. Mol. Struct. 56(2): 245-253

  8. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  9. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  10. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  11. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  12. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  13. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  14. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  15. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  16. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  17. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  18. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  19. possible applications of charge and bond order-based similarity analysis Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  20. possible applications of charge and bond order-based similarity analysis Neykov, G., V. Enchev, V. Monev and I. Kanev (1995). Electronic structure and polarizabilities of some heterocycles. I. Hydroxypyrazoles amd related molecules. Molecular Engineering 5: 347-361

  21. appendix Mehlhorn, A., F. Fratev, O. E. Polansky and V. Monev (1984). Distance measures. A new tool for the analysis and characterization of molecular properties. MATCH-Commun. Math. Comput. Chem.(15): 3-107

  22. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  23. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  24. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  25. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  26. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  27. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  28. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  29. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  30. we develop the conceptual apparatus of similarity Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  31. Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  32. Monev, V. (2004). Introduction to similarity searching in chemistry. MATCH-Commun. Math. Comput. Chem.(51): 7-38

  33. standing on the shoulders of giants

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