Unimolecular Kinetics: Part 2: Collisional Energy Transfer and The Master Equation

Author:   Struan H. Robertson (Senior Manager, Materials Simulation Group, Dassault Systemes UK Ltd.)
Publisher:   Elsevier Science & Technology
ISBN:  

9780444642073


Pages:   540
Publication Date:   31 May 2019
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Unimolecular Kinetics: Part 2: Collisional Energy Transfer and The Master Equation


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Overview

Unimolecular Kinetics: Part 2: Collisional Energy Transfer and the Master Equation, Volume 43 in Elsevier’s Comprehensive Molecular Kinetics series, addresses collision energy transfer and the effects it has on gas phase reactions, particularly at low gas density. Such systems include combustion, industrial gas phase processes and atmospheric/environmental processes. The book also discusses The Master Equation to give a good overview of the mechanics underpinning unimolecular kinetics. This new volume will be of interest to researchers investigating gas phase processes which involve unimolecular reactions and the related intermolecular reactions.

Full Product Details

Author:   Struan H. Robertson (Senior Manager, Materials Simulation Group, Dassault Systemes UK Ltd.)
Publisher:   Elsevier Science & Technology
Imprint:   Elsevier Science Ltd
Weight:   1.120kg
ISBN:  

9780444642073


ISBN 10:   0444642072
Pages:   540
Publication Date:   31 May 2019
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Part A. Collisional Energy transfer 5. Experiment 6. Quantum Scattering theory 7. Classical Trajectory calculations  8. Parametric models Part B. The master equation 9. Foundations of the model 10. Numerical methods 11. Monte Carlo Methods 12. Steady-state methods

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Struan H. Robertson, PhD is senior manager of the molecular simulation group at Dassult Systemes BIOVIA in the United Kingdom. Dr. Robertson has more than 30 years of experience in reaction kinetics and molecular dynamics modeling. Dr. Robertson has published 60 papers and one book, primarily covering the modelling of gas phase reactions. His primary research interests are in the modelling of elementary reactions in combustion and atmospheric systems.

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