Nonequilibrium Molecular Dynamics

Nonequilibrium Molecular Dynamics
Title Nonequilibrium Molecular Dynamics PDF eBook
Author Billy D. Todd
Publisher Cambridge University Press
Pages 371
Release 2017-03-10
Genre Science
ISBN 0521190096

Download Nonequilibrium Molecular Dynamics Book in PDF, Epub and Kindle

This coherent collection of theory, algorithms, and illustrative results presents the field of nonequilibrium molecular dynamics in detail.

Nonequilibrium Gas Dynamics and Molecular Simulation

Nonequilibrium Gas Dynamics and Molecular Simulation
Title Nonequilibrium Gas Dynamics and Molecular Simulation PDF eBook
Author Iain D. Boyd
Publisher Cambridge University Press
Pages 383
Release 2017-03-23
Genre Science
ISBN 1107073448

Download Nonequilibrium Gas Dynamics and Molecular Simulation Book in PDF, Epub and Kindle

7.1 Introduction -- 7.2 Rotational Energy Exchange Models -- 7.2.1 Constant Collision Number -- 7.2.2 The Parker Model -- 7.2.3 Variable Probability Exchange Model of Boyd -- 7.2.4 Nonequilibrium Direction Dependent Model -- 7.2.5 Model Results -- 7.3 Vibrational Energy Exchange Models -- 7.3.1 Constant Collision Number -- 7.3.2 The Millikan-White Model -- 7.3.3 Quantized Treatment for Vibration -- 7.3.4 Model Results -- 7.4 Dissociation Chemical Reactions -- 7.4.1 Total Collision Energy Model -- 7.4.2 Redistribution of Energy Following a Dissociation Reaction -- 7.4.3 Vibrationally Favored Dissociation Model -- 7.5 General Chemical Reactions -- 7.5.1 Reaction Rates and Equilibrium Constant -- 7.5.2 Backward Reaction Rates in DSMC -- 7.5.3 Three-Body Recombination Reactions -- 7.5.4 Post-Reaction Energy Redistribution and General Implementation -- 7.5.5 DSMC Solutions for Reacting Flows -- 7.6 Summary -- Appendix A: Generating Particle Properties -- Appendix B: Collisional Quantities -- Appendix C: Determining Post-Collision Velocities -- Appendix D: Macroscopic Properties -- Appendix E: Common Integrals -- References -- Index

Statistical Mechanics of Nonequilibrium Liquids

Statistical Mechanics of Nonequilibrium Liquids
Title Statistical Mechanics of Nonequilibrium Liquids PDF eBook
Author Denis J. Evans
Publisher ANU E Press
Pages 318
Release 2007-08-01
Genre Science
ISBN 1921313234

Download Statistical Mechanics of Nonequilibrium Liquids Book in PDF, Epub and Kindle

"There is a symbiotic relationship between theoretical nonequilibrium statistical mechanics on the one hand and the theory and practice of computer simulation on the other. Sometimes, the initiative for progress has been with the pragmatic requirements of computer simulation and at other times, the initiative has been with the fundamental theory of nonequilibrium processes. This book summarises progress in this field up to 1990"--Publisher's description.

Molecular Dynamics Simulation

Molecular Dynamics Simulation
Title Molecular Dynamics Simulation PDF eBook
Author Giovanni Ciccotti
Publisher MDPI
Pages 627
Release 2018-10-08
Genre Science
ISBN 3906980650

Download Molecular Dynamics Simulation Book in PDF, Epub and Kindle

Printed Edition of the Special Issue Published in Entropy

The Art of Molecular Dynamics Simulation

The Art of Molecular Dynamics Simulation
Title The Art of Molecular Dynamics Simulation PDF eBook
Author D. C. Rapaport
Publisher Cambridge University Press
Pages 568
Release 2004-04
Genre Science
ISBN 9780521825689

Download The Art of Molecular Dynamics Simulation Book in PDF, Epub and Kindle

First time paperback of successful physics monograph. Copyright © Libri GmbH. All rights reserved.

Computational Statistical Mechanics

Computational Statistical Mechanics
Title Computational Statistical Mechanics PDF eBook
Author W.G. Hoover
Publisher Elsevier
Pages 330
Release 2012-12-02
Genre Science
ISBN 0444596593

Download Computational Statistical Mechanics Book in PDF, Epub and Kindle

Computational Statistical Mechanics describes the use of fast computers to simulate the equilibrium and nonequilibrium properties of gases, liquids, and solids at, and away from equilibrium. The underlying theory is developed from basic principles and illustrated by applying it to the simplest possible examples. Thermodynamics, based on the ideal gas thermometer, is related to Gibb's statistical mechanics through the use of Nosé-Hoover heat reservoirs. These reservoirs use integral feedback to control temperature. The same approach is carried through to the simulation and analysis of nonequilibrium mass, momentum, and energy flows. Such a unified approach makes possible consistent mechanical definitions of temperature, stress, and heat flux which lead to a microscopic demonstration of the Second Law of Thermodynamics directly from mechanics. The intimate connection linking Lyapunov-unstable microscopic motions to macroscopic dissipative flows through multifractal phase-space structures is illustrated with many examples from the recent literature. The book is well-suited for undergraduate courses in advanced thermodynamics, statistical mechanic and transport theory, and graduate courses in physics and chemistry.

Time Reversibility, Computer Simulation, Algorithms, Chaos

Time Reversibility, Computer Simulation, Algorithms, Chaos
Title Time Reversibility, Computer Simulation, Algorithms, Chaos PDF eBook
Author William Graham Hoover
Publisher World Scientific
Pages 426
Release 2012
Genre Mathematics
ISBN 9814383163

Download Time Reversibility, Computer Simulation, Algorithms, Chaos Book in PDF, Epub and Kindle

The book begins with a discussion, contrasting the idealized reversibility of basic physics against the pragmatic irreversibility of real life. Computer models, and simulation, are next discussed and illustrated. Simulations provide the means to assimilate concepts through worked-out examples. State-of-the-art analyses, from the point of view of dynamical systems, are applied to many-body examples from nonequilibrium molecular dynamics and to chaotic irreversible flows from finite-difference, finite-element, and particle-based continuum simulations. Two necessary concepts from dynamical-systems theory - fractals and Lyapunov instability - are fundamental to the approach. Undergraduate-level physics, calculus, and ordinary differential equations are sufficient background for a full appreciation of this book, which is intended for advanced undergraduates, graduates, and research workers.