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Determination of complex reaction mechanisms : analysis of chemical, biological, and genetic networks /

In a chemical system with many chemical species several questions can be asked: what species react with other species: in what temporal order: and with what results? These questions have been asked for over one hundred years about simple and complex chemical systems, and the answers constitute the m...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Ross, John, 1926-2017
Otros Autores: Schreiber, Igor, Vlad, Marcel O.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Oxford ; New York : Oxford University Press, 2006.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a Ross, John,  |d 1926-2017. 
245 1 0 |a Determination of complex reaction mechanisms :  |b analysis of chemical, biological, and genetic networks /  |c John Ross, Igor Schreiber, Marcel O. Vlad ; with contributions from Adam Arkin, Peter J. Oefner and Nicola Zamboni. 
260 |a Oxford ;  |a New York :  |b Oxford University Press,  |c 2006. 
300 |a 1 online resource (ix, 226 pages, 2 unnumbered pages of plates) :  |b illustrations (some color) 
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504 |a Includes bibliographical references and index. 
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520 |a In a chemical system with many chemical species several questions can be asked: what species react with other species: in what temporal order: and with what results? These questions have been asked for over one hundred years about simple and complex chemical systems, and the answers constitute the macroscopic reaction mechanism. In "Determination of Complex Reaction Mechanisms", authors John Ross, Igor Schreiber, and Marcel Vlad present several systematic approaches for obtaining information on the causal connectivity of chemical species, on correlations of chemical species, on the reaction pathway, and on the reaction mechanism. Basic pulse theory is demonstrated and tested in an experiment on glycolysis. In a second approach, measurements on time series of concentrations are used to construct correlation functions and a theory is developed which shows that from these functions information may be inferred on the reaction pathway, the reaction mechanism, and the centers of control in that mechanism.; A third approach is based on application of genetic algorithm methods to the study of the evolutionary development of a reaction mechanism, to the attainment given goals in a mechanism, and to the determination of a reaction mechanism and rate coefficients by comparison with experiment. Responses of non-linear systems to pulses or other perturbations are analyzed, and mechanisms of oscillatory reactions are presented in detail. The concluding chapters give an introduction to bioinformatics and statistical methods for determining reaction mechanisms 
505 0 |a 1 Introduction; 2 Introduction to Chemical Kinetic Processes; 3 A Brief Review of Methodology for the Analysis of Biochemical Reactions and Cells; 4 Computations by Means of Macroscopic Chemical Kinetics; 5 Response of Systems to Pulse Perturbations; 6 Experimental Test of the Pulse Perturbation Method for Determining Causal Connectivities of Chemical Species in a Reaction Network; 7 Correlation Metric Construction: Theory of Statistical Construction of Reaction Mechanisms; 8 Experimental Test and Applications of Correlation Metric Construction; 9 Density Estimation 
505 8 |a 10 Applications of Genetic Algorithms to the Determination of Reaction Mechanisms11 Oscillatory Reactions; 12 Lifetime and Transit Time Distributions and Response Experiments in Chemical Kinetics; 13 Mini-Introduction to Bioinformatics; Index 
546 |a English. 
590 |a eBooks on EBSCOhost  |b EBSCO eBook Subscription Academic Collection - Worldwide 
650 0 |a Chemical kinetics. 
650 0 |a Reaction mechanisms (Chemistry) 
650 0 |a Chemical reaction, Conditions and laws of. 
650 6 |a Cinétique chimique. 
650 6 |a Réactions chimiques  |x Mécanismes. 
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650 7 |a Reaction mechanisms (Chemistry)  |2 fast 
700 1 |a Schreiber, Igor. 
700 1 |a Vlad, Marcel O. 
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