Chemical Kinetics and Catalysis
| AUTHOR | Masel, Richard I. |
| PUBLISHER | Wiley-Interscience (04/13/2001) |
| PRODUCT TYPE | Hardcover (Hardcover) |
Description
Die traditionelle Behandlung der Grundlagen der chemischen Kinetik und der Katalyse wird in diesem Buch sinnvoll verknupft mit der Prasentation aktueller Rechenmethoden. Der Autor fuhrt vor, in welcher Weise sich Reaktionsmechanismen vorhersagen und A-priori-Zeitgesetze formulieren lassen. Anwenden lassen sich die Konzepte auf die Erforschung komplexer Phanomene, beispielsweise in biologischen Systemen, bei der Synthese von Halbleitern und bei Korrosionsprozessen.
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Product Format
Product Details
ISBN-13:
9780471241973
ISBN-10:
0471241970
Binding:
Hardback or Cased Book (Sewn)
Content Language:
English
More Product Details
Page Count:
970
Carton Quantity:
10
Product Dimensions:
6.48 x 1.93 x 9.48 inches
Weight:
3.31 pound(s)
Feature Codes:
Bibliography,
Index,
Illustrated
Country of Origin:
US
Subject Information
BISAC Categories
Science | Chemistry - Physical & Theoretical
Science | Mathematical Analysis
Science | Chemical & Biochemical
Dewey Decimal:
541.394
Library of Congress Control Number:
00043303
Descriptions, Reviews, Etc.
jacket back
A textbook for kinetics in the twenty-first century CHEMICAL KINETICS AND CATALYSIS Chemical kinetics is important for understanding a number of processes, including how food is metabolized, how pharmaceuticals function in a biological system, and how pollutants produced by gasoline combustion are converted for release into the atmosphere. The revolution in computational modeling necessitates an updated text that maintains the relevant traditional background while introducing novel computational methods. Chemical Kinetics and Catalysis meets this challenge and provides an appropriate text for the next generation of scientists in this field. The advent of accurate graphing programs has all but eliminated the use of complex methods to fit data to appropriate rate equations. Within the framework of the traditional theories of kinetics and catalysis, Masel adds explanations of computational graphing programs, numerous solved examples, and problems. This comprehensive text covers:
* Introduction to kinetics via rate equations and mechanisms
* Theory of reaction rates with a section on utilizing trajectory calculations to simulate reactions
* Prediction of potential energy surfaces including methods for directing the reaction rate
* Examination of catalysis, particularly how solvents, metals, and oxides can be used to modify the potential energy surface for reactions and thereby modify reaction rates Chemical Kinetics and Catalysis is an indispensable tool for both students and researchers in engineering, chemistry, and biochemistry. Additional problems and solutions are available at
www.wiley.com/chemicalkinetics
* Introduction to kinetics via rate equations and mechanisms
* Theory of reaction rates with a section on utilizing trajectory calculations to simulate reactions
* Prediction of potential energy surfaces including methods for directing the reaction rate
* Examination of catalysis, particularly how solvents, metals, and oxides can be used to modify the potential energy surface for reactions and thereby modify reaction rates Chemical Kinetics and Catalysis is an indispensable tool for both students and researchers in engineering, chemistry, and biochemistry. Additional problems and solutions are available at
www.wiley.com/chemicalkinetics
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publisher marketing
Die traditionelle Behandlung der Grundlagen der chemischen Kinetik und der Katalyse wird in diesem Buch sinnvoll verknupft mit der Prasentation aktueller Rechenmethoden. Der Autor fuhrt vor, in welcher Weise sich Reaktionsmechanismen vorhersagen und A-priori-Zeitgesetze formulieren lassen. Anwenden lassen sich die Konzepte auf die Erforschung komplexer Phanomene, beispielsweise in biologischen Systemen, bei der Synthese von Halbleitern und bei Korrosionsprozessen.
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Author:
Masel, Richard I.
RICHARD I. MASEL, PhD, is Professor of Chemical Engineering at the University of Illinois at Urbana-Champaign. He received his doctorate in chemical engineering from the University of California at Berkeley.
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