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CD-ROM: "CARAT" software. Computer interactive models and database for the CAlculation of RATe constants, Supplement to Reference Book: Physical and chemical processes in gas dynamics, Cross sections and rate constants.
This text presents a balanced presentation of the macroscopic view of empirical kinetics and the microscopic molecular viewpoint of chemical dynamics. This second edition includes the latest information, as well as new topics such as heterogeneous reactions in atmospheric chemistry, reactant product imaging, and molecular dynamics of H + H2.
Chemical Kinetics and Reaction Dynamics brings together the major facts and theories relating to the rates with which chemical reactions occur from both the macroscopic and microscopic point of view. This book helps the reader achieve a thorough understanding of the principles of chemical kinetics and includes: Detailed stereochemical discussions of reaction steps Classical theory based calculations of state-to-state rate constants A collection of matters on kinetics of various special reactions such as micellar catalysis, phase transfer catalysis, inhibition processes, oscillatory reactions, solid-state reactions, and polymerization reactions at a single source. The growth of the chemical industry greatly depends on the application of chemical kinetics, catalysts and catalytic processes. This volume is therefore an invaluable resource for all academics, industrial researchers and students interested in kinetics, molecular reaction dynamics, and the mechanisms of chemical reactions.
A decade ago, Russian scientist Staly A. Losev assembled top scientists from various Russian institutions at Moscow State University and invited them to pool their knowledge about the changes gases undergo in a variety of aerospace settings from combustion of rocket fuels to hypersonic flow paths to the exteriors of atmospheric reentry vehicles. The work grew into the AVAGADRO Laboratory of Moscow State Universitys Institute of Mechanics. The models and formulas produced by the team of authors are contained in the second edition of the text book, "Physical and Chemical Processes in Gas Dynamics." The text provides a valuable window into the design philosophies and models that govern former-Soviet engineers and scientists. "Normally, these things are not accessible to U.S. engineers, "said Paul Zarchan of MITs Lincoln Laboratory, Editor-in-Chief of AIAAs Progress in Astronautics and Aeronautics Series that includes this text. Accompanying the book is the Russian-produced Chemical Workbench software, which is a user-friendly, Windows-based interface for performing calculations based on the models of gas dynamics contained in the book. The book and software provide concise, exhaustive, and clear descriptions of terms, notations, concepts, methods, laws, and techniques. It is invaluable for students and engineers who are determined to more accurately predict the physical and chemical processes in gas and plasma dynamics.
Chemical Kinetics relates to the rates of chemical reactions and factors such as concentration and temperature, which affects the rates of chemical reactions. Such studies are important in providing essential evidence as to the mechanisms of chemical processes. The book is designed to help the reader, particularly students and researchers of physical science, understand the chemical kinetics mechanics and chemical reactions. The selection of topics addressed and the examples, tables and graphs used to illustrate them are governed, to a large extent, by the fact that this book is aimed primarily at physical science (mainly chemistry) technologists. Undoubtedly, this book contains "must read" materials for students, engineers, and researchers working in the chemistry and chemical kinetics area. This book provides valuable insight into the mechanisms and chemical reactions. It is written in concise, self-explanatory and informative manner by a world class scientists in the field.
Introduces advanced mathematical tools for the modeling, simulation, and analysis of chemical non-equilibrium phenomena in combustion and flows, following a detailed explanation of the basics of thermodynamics and chemical kinetics of reactive mixtures. Researchers, practitioners, lecturers, and graduate students will find this work valuable.