Theories of Molecular Reaction Dynamics: The Microscopic Foundation of Chemical Kinetics, Second Edition | Agenda Bookshop Skip to content
A01=Flemming Y. Hansen
A01=Niels E. Henriksen
Age Group_Uncategorized
Age Group_Uncategorized
Author_Flemming Y. Hansen
Author_Niels E. Henriksen
automatic-update
Category1=Non-Fiction
Category=PHM
Category=PHVQ
Category=PNR
Category=PNRP
Category=PSD
Category=TGM
COP=United Kingdom
Delivery_Pre-order
Language_English
PA=Not yet available
Price_€20 to €50
PS=Forthcoming
softlaunch

Theories of Molecular Reaction Dynamics: The Microscopic Foundation of Chemical Kinetics, Second Edition

English

By (author): Flemming Y. Hansen Niels E. Henriksen

This book deals with a central topic at the interface of chemistry and physics the understanding of how the transformation of matter takes place at the atomic level. Building on the laws of physics, the book focuses on the theoretical framework for predicting the outcome of chemical reactions. The style is highly systematic with attention to basic concepts and clarity of presentation. The emphasis is on concepts and insights obtained via analytical theories rather than computational and numerical aspects. Molecular reaction dynamics is about the detailed atomic-level description of chemical reactions. Based on quantum mechanics and statistical mechanics, the dynamics of uni- and bi-molecular elementary reactions are described. The book features a comprehensive presentation of transition-state theory which plays an important role in practice, and a detailed discussion of basic theories of reaction dynamics in condensed phases. Examples and end-of-chapter problems are included in order to illustrate the theory and its connection to chemical problems. The second edition includes updated descriptions of adiabatic and non-adiabatic electron-nuclear dynamics, an expanded discussion of classical two-body models of chemical reactions, including the Langevin model, additional material on quantum tunnelling and its implementation in Transition-State Theory, and a more thorough description of the Born and Onsager models for solvation. See more
Current price €40.04
Original price €44.99
Save 11%
A01=Flemming Y. HansenA01=Niels E. HenriksenAge Group_UncategorizedAuthor_Flemming Y. HansenAuthor_Niels E. Henriksenautomatic-updateCategory1=Non-FictionCategory=PHMCategory=PHVQCategory=PNRCategory=PNRPCategory=PSDCategory=TGMCOP=United KingdomDelivery_Pre-orderLanguage_EnglishPA=Not yet availablePrice_€20 to €50PS=Forthcomingsoftlaunch

Will deliver when available. Publication date 01 May 2024

Product Details
  • Dimensions: 171 x 246mm
  • Publication Date: 01 May 2024
  • Publisher: Oxford University Press
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9780198899273

About Flemming Y. HansenNiels E. Henriksen

Niels Engholm Henriksen holds a Ph.D. in chemical physics from the Technical University of Denmark and a D.Sc. from the University of Copenhagen. After his postdoctoral work in the United States with E.J. Heller he became a senior research scholar at the University of Copenhagen. Since 1991 NEH has been affiliated with the Technical University of Denmark. His research interests cover various aspects of theoretical molecular reaction dynamics including femtochemistry. Flemming Yssing Hansen has a Ph.D. in physical chemistry from the Technical University of Denmark. From 1973-2012 he held a position as associate professor in physical chemistry at the Technical University of Denmark and served during that time a 15 year period as chairman of the Department of Physical Chemistry. Since 2012 he has held an emeritus position at the Department of Chemistry the Technical University of Denmark. He has spent extensive time in Chile and USA as a visiting professor at various universities and was appointed as adjunct professor in Physics at the University of Missouri-Columbia. His research interests cover a wide range of aspects within thermodynamics statistical mechanics quantum mechanics and molecular dynamics simulations.

Customer Reviews

Be the first to write a review
0%
(0)
0%
(0)
0%
(0)
0%
(0)
0%
(0)
We use cookies to ensure that we give you the best experience on our website. If you continue we'll assume that you are understand this. Learn more
Accept