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Understanding Molecular Simulation: From Algorithms to Applications

Understanding Molecular Simulation: From Algorithms to Applications

          
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Understanding Molecular Simulation explains molecular simulation from a chemical-physics and statistical-mechanics perspective. It highlights how physical concepts are used to develop better algorithms and expand the range of applicability of simulations. Understanding Molecular Simulation is equally relevant for those who develop new code and those who use existing packages. Both groups are continuously confronted with the question of which computational technique best suits a given application. Understanding Molecular Simulation provides readers with the foundational knowledge they need to learn about, select and apply the most appropriate of these tools to their own work. The implementation of simulation methods is illustrated in pseudocodes, and their practical use is shown via case studies presented throughout the text.

Since the second edition's publication, the simulation world has expanded significantly: existing techniques have continued to develop, and new ones have emerged, opening up novel application areas. This new edition aims to describe these new developments without becoming exhaustive; examples are included that highlight current uses, and several new examples have been added to illustrate recent applications. Examples, case studies, questions, and downloadable algorithms are also included to support learning. No prior knowledge of computer simulation is assumed.

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About the Book

Understanding Molecular Simulation: From Algorithms to Applications explains the physics behind the "recipes" of molecular simulation for materials science. Computer simulators are continuously confronted with questions concerning the choice of a particular technique for a given application. A wide variety of tools exist, so the choice of technique requires a good understanding of the basic principles. More importantly, such understanding may greatly improve the efficiency of a simulation program. The implementation of simulation methods is illustrated in pseudocodes and their practical use in the case studies used in the text.

Since the first edition only five years ago, the simulation world has changed significantly -- current techniques have matured and new ones have appeared. This new edition deals with these new developments; in particular, there are sections on:

  • Transition path sampling and diffusive barrier crossing to simulaterare events
  • Dissipative particle dynamic as a course-grained simulation technique
  • Novel schemes to compute the long-ranged forces
  • Hamiltonian and non-Hamiltonian dynamics in the context constant-temperature and constant-pressure molecular dynamics simulations
  • Multiple-time step algorithms as an alternative for constraints
  • Defects in solids
  • The pruned-enriched Rosenbluth sampling, recoil-growth, and concerted rotations for complex molecules
  • Parallel tempering for glassy Hamiltonians

Examples are included that highlight current applications and the codes of case studies are available on the World Wide Web. Several new examples have been added since the first edition to illustrate recent applications. Questions are included in this new edition. No prior knowledge of computer simulation is assumed.


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Product Details
  • ISBN-13: 9780122673511
  • Publisher: Academic Press
  • Publisher Imprint: Academic Press
  • Depth: 38
  • Height: 236 mm
  • No of Pages: 664
  • Series Title: Computational Science
  • Sub Title: From Algorithms to Applications
  • Width: 158 mm
  • ISBN-10: 0122673514
  • Publisher Date: 07 Nov 2001
  • Binding: Hardback
  • Edition: 2 SUB
  • Language: English
  • Returnable: Y
  • Spine Width: 38 mm
  • Weight: 1196 gr


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