Understanding molecular simulation : from algorithms to applications / Daan Frenkel, Berend Smit.
Material type:
- 9780122673511
- Intermolecular forces -- Computer simulation
- Molecules -- Mathematical models
- Forces intermoléculaires -- Simulation par ordinateur
- Molécules -- Modèles mathématiques
- SCIENCE -- Physics -- Atomic & Molecular
- Intermolecular forces -- Computer simulation
- Molecules -- Mathematical models
- Simulatiemodellen
- Monte Carlo-methode
- Statistische mechanica
- Moleculaire dynamica
- Vrije energie
- Fase-evenwichten
- Forças intermoleculares (simulação computacional)
- Molécula (modelos matemáticos)
- Simulação (estatística)
- 539/.6/0113 22
- QD461 .F86 2002eb
Item type | Current library | Call number | Status | Barcode | |
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Air University Central Library Islamabad | 539.60113 F849U (Browse shelf(Opens below)) | Available | P5226 |
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538.4 CUL-I Introduction to Magnetic Materials | 539 SAN Essentials of modern physics | 539.2 INA Electromagnetic waves | 539.60113 F849U Understanding molecular simulation : | 539.7 K896I Introductory nuclear physics | 539.7 KAP Nuclear physics | 539.705 K1412N Nuclear physics. |
Includes bibliographical references (pages 589-617) and index.
Statistical mechanics -- Monte Carlo simulations -- Molecular dynamics simulations -- Monte Carlo simulations in various ensembles -- Molecular dynamics in various ensembles -- Free energy calculations -- The Gibbs ensemble -- Other methods to study coexistence -- Free energies of solids -- Free energy of chain molecules -- Long-range interactions -- Biased Monte Carlo schemes -- Accelerating Monte Carlo sampling -- Tackling time-scale problems -- Rare events -- Dissipative particle dynamics.
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.
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