4 edition of Dynamical Processes in Condensed Molecular Systems found in the catalog.
Dynamical Processes in Condensed Molecular Systems
by World Scientific Pub Co Inc
Written in English
|Contributions||D. Haarer (Editor)|
|The Physical Object|
|Number of Pages||500|
Request PDF | Quantum Dynamics of Complex Molecular Systems | Quantum phenomena are ubiquitous in complex molecular systems - as revealed by . Resonances The Unifying Route Towards the Formulation of Dynamical Processes Foundations and Applications in Nuclear, Atomic and Molecular Physics Proceedings of a Symposium Held at Lertorpet, Värmland, Sweden, August 19–26, and to amorphous condensed systems. The reviews give a concise and pedagogically useful presentation of the.
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situation (such as in a gas phase molecular beam) where these interactions play a minor role. The couplings and additional dynamical processes may strongly complicate the practical application and the interpretation of quantum control schemes. Nonetheless, these complex systems are highly rele-. The third part of this text focuses on several important dynamical processes in condensed phase molecular systems. These are vibrational relaxation (Chapter 13), Chemical reactions in the barrier controlled and diffusion controlled regimes (Chapter 14), solvation dynamics in dielectric environments (Chapter 15), electron.
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This book is a milestone in the field. It lays out the foundations of quantum condensed phase dynamics: quantum mechanics, statistical mechanics, liquid theory, condensed matter theory, stochastic processes, and spectroscopy, and then builds upon these to present a clear and precise picture of how chemical physicistsCited by: ISBN: OCLC Number: Description: viii, pages: illustrations ; 23 cm: Contents: Glassy materials --Random walks and their.
This review volume provides an up-to-date review of experimental methods and theoretical approaches in the study of dynamical processes in condensed molecular systems.
Immediate access to your online only subscription; Includes issues from January to December ; Automatic annual renewalAuthor: Michael F.
Shlesinger. This text provides a uniform and consistent approach to diversified problems encountered in the study of dynamical processes in condensed phase molecular systems. Given the broad interdisciplinary aspect of this subject, the book focuses on three themes: coverage of needed background material, in-depth introduction of methodologies, and analysis of several key applications.
Electron transfer processes; Electron transfer and transmission at molecule-metal and molecule-semiconductor interfaces; Spectroscopy.
(source: Nielsen Book Data) Summary This text provides a uniform and consistent approach to diversified problems encountered in the study of dynamical processes in condensed phase molecular systems.
Dynamical processes in condensed molecular systems: Proceedings of the Polish-Israel-German symposium June • Cracow, Poland. This text provides a uniform and consistent approach to diversified problems encountered in the study of dynamical processes in condensed phase molecular systems.
Spectroscopy of Condensed Media: Dynamics of Molecular Interactions discusses the use of molecular spectroscopy (including nuclear magnetic resonance [NMR] and nonlinear optical spectroscopy) in dynamic processes in condensed molecular systems.
adshelp[at] The ADS is operated by the Smithsonian Astrophysical Observatory under NASA Cooperative Agreement NNX16AC86AAuthor: Michael F. Shlesinger. The methodological part concludes with a discussion of linear response theory in Chap and of the spin-boson model in chapter The third part of the book applies the methodologies introduced earlier to several fundamental processes that underlie much of the dynamical behaviour of condensed phase molecular s: DYNAMICAL PROCESSES IN CONDENSED MATTER Edited by MYRON W.
EVANS University College of North Wales ADVANCES IN CHEMICAL PHYSICS VOLUME LXIII Series ediiors nya prisogine Stuart A. Rice University of Brussels Deparimeni of Chemistry Brursels, Belgium and. If the address matches an existing account you will receive an email with instructions to reset your password.
This book is a milestone in the field. It lays out the foundations of quantum condensed phase dynamics: quantum mechanics, statistical mechanics, liquid theory, condensed matter theory, stochastic processes, and spectroscopy, and then builds upon these to present a clear and precise picture of how chemical physicistsReviews: To provide a sound basis for understanding these levels of complexity, this book provides an analysis of the fundamentals of electronic structures, dynamic processes in condensed phases, and the unique properties of organic molecular solids and the environmental effects on these properties.
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Be the first. Similar Items. Purchase Molecular Conformation and Dynamics of Macromolecules in Condensed Systems, Volume 2 - 1st Edition. Print Book & E-Book. ISBNWe review the progress in controlling quantum dynamical processes in the condensed phase with femtosecond laser pulses.
Due to its high particle density the condensed phase has both high relevance and appeal for chemical synthesis. Thus, in recent years different methods have been developed to. tered in the study of dynamical processes in condensed phase molecular systems.
Given the broad interdisciplinary aspect of this subject, the book focuses on three themes: coverage of needed background material, in-depth introduction of method-ologies, and analysis of several key applications.
The uniform approach and common. The book provides a detailed account of how condensed-phase molecular dynamics are reflected in the line shapes of NMR spectra. The theories establishing connections between random, time-dependent molecular processes and lineshape effects are exposed in depth.
Studies of model condensed-phase systems target first-principles understanding of molecular reactivity and dynamical processes in solution and at interfaces, including complex interfaces.And in molecular gases and liquids, processes of optical harmonic conversion present a powerful tool for the study of both static and dynamic effects of molecular orientation.
Where the detailed nonlinear optical response of molecules is required, the application of molecular quantum electrodynamics (QED) brings both rigour and conceptual facility.Recent advances in the Density Functional Theory (DFT) of molecules have provided us with improved density functionals which can be used to describe both chemical bonding and intermolecular interactions in hydrogen bonded systems.
When implemented in ab initio molecular dynamics (MD) codes, these DFT methods enable us to study dynamical processes in hydrogen bonded condensed phases .