The Theory of Chemical Reaction Dynamics

Author:   D.C. Clary
Publisher:   Springer
Edition:   1986 ed.
Volume:   170
ISBN:  

9789027722027


Pages:   418
Publication Date:   31 March 1986
Format:   Hardback
Availability:   Out of print, replaced by POD   Availability explained
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The Theory of Chemical Reaction Dynamics


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Author:   D.C. Clary
Publisher:   Springer
Imprint:   Kluwer Academic Publishers
Edition:   1986 ed.
Volume:   170
Dimensions:   Width: 15.60cm , Height: 2.30cm , Length: 23.40cm
Weight:   1.720kg
ISBN:  

9789027722027


ISBN 10:   9027722021
Pages:   418
Publication Date:   31 March 1986
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Out of print, replaced by POD   Availability explained
We will order this item for you from a manufatured on demand supplier.

Table of Contents

Recent Quantum Scattering Calculations on the H + H2 Reaction and its Isotopic Counterparts.- Reaction Path Models for Polyatomic Reaction Dynamics From Transition State Theory to Path Integrals.- Reduced Dimensionality Theories of Quantum Reactive Scattering: Applications to Mu + H2, H + H, O(3P) + H2, D2 and HD.- Calculations on Collinear Reactions using Hyperspherical Coordinates.- Reactive Scattering in the Bending-Corrected Rotating Linear Model.- Periodic Orbits and Reactive Scattering:Past, Present and Future.- The Sudden Approximation for Reactions.- Hyperspherical Coordinate Formulation of the Electron-Hydrogen Atom Scattering Problem.- The R-Matrix Method.- The Time-Dependent Wavepacket Method: Application to Collision Induced Dissociation Processes.- The Distorted Wave Theory of Chemical Reactions.- The Representation and Use of Potential Energy Surfaces in the Wide Vicinity of a Reaction Path for Dynamics Calculations on Polyatomic Reactions.- Light-Heavy-Light Chemical Reactions.- Arrangement Channel Quantum Mechanical Approach to Reactive Scattering.- Resonances in Reactions: A Semiclassical View.

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