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Chemical Reaction Networks: A Graph-Theoretical Approach



Chemical Reaction Networks: A Graph-Theoretical Approach
This book is about the application of graph theory to chemical reactions and their mechanisms. It reviews and expands upon graph theory as applied to mechanistic theory, chemical kinetics, and catalysis. The book discusses various graph-theoretical approaches to canonical representation, numbering, and coding of elementary steps and chemical reaction mechanisms, the analysis of their topological s... more details
Key Features:
  • Reviews and expands upon graph theory as applied to mechanistic theory, chemical kinetics, and catalysis
  • Discusses various graph-theoretical approaches to canonical representation, numbering, and coding of elementary steps and chemical reaction mechanisms
  • Analysis of their topological structure


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Features
Author Oleg N. Temkin,Andrew V. Zeigarnik,Danail G. Bonchev
Format Hardcover
ISBN 9780849328671
Publisher Crc-press
Manufacturer Crc-press
Description
This book is about the application of graph theory to chemical reactions and their mechanisms. It reviews and expands upon graph theory as applied to mechanistic theory, chemical kinetics, and catalysis. The book discusses various graph-theoretical approaches to canonical representation, numbering, and coding of elementary steps and chemical reaction mechanisms, the analysis of their topological structure, the complexity estimation, and classification of reaction mechanisms. It also discusses topologically distinctive features of multiroute catalytic and noncatalytic and chain reactions involving metal complexes.

Over the last decade, increased attention to reaction dynamics, combined with the intensive application of computers in chemical studies, mathematical modeling of chemical processes, and mechanistic studies has brought graph theory to the forefront of research. It offers an advanced and powerful formalism for the description of chemical reactions and their intrinsic reaction mechanisms. Chemical Reaction Networks: A Graph-Theoretical Approach elegantly reviews and expands upon graph theory as applied to mechanistic theory, chemical kinetics, and catalysis. The authors explore various graph-theoretical approaches to canonical representation, numbering, and coding of elementary steps and chemical reaction mechanisms, the analysis of their topological structure, the complexity estimation, and classification of reaction mechanisms. They discuss topologically distinctive features of multiroute catalytic and noncatalytic and chain reactions involving metal complexes.With it's careful balance of clear language and mathematical rigor, the presentation of the authors' significant original work, and emphasis on practical applications and examples, Chemical Reaction Networks: A Graph Theoretical Approach is both an outstanding reference and valuable tool for chemical research.

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