A Practical Introduction to the Simulation of Molecular Systems
2 Revised edition
Book Details
Format
Hardback or Cased Book
ISBN-10
0521852528
ISBN-13
9780521852524
Edition
2 Revised edition
Publisher
Cambridge University Press
Imprint
Cambridge University Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jul 19th, 2007
Print length
344 Pages
Weight
846 grams
Dimensions
25.50 x 18.30 x 2.10 cms
Product Classification:
Atomic & molecular physics3D graphics & modelling
Ksh 23,950.00
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Updated edition introducing a wide range of techniques for the simulation of molecular systems at the atomic level. Contains numerous examples and program modules in Python. For researchers and graduate students interested in using atomic-scale molecular simulations. Supplementary material, including the program library and technical information, available through www.cambridge.org/9780521852524.
Molecular simulation is a powerful tool in materials science, physics, chemistry and biomolecular fields. This updated edition provides a pragmatic introduction to a wide range of techniques for the simulation of molecular systems at the atomic level. The first part concentrates on methods for calculating the potential energy of a molecular system, with new chapters on quantum chemical, molecular mechanical and hybrid potential techniques. The second part describes methods examining conformational, dynamical and thermodynamical properties of systems, covering techniques including geometry-optimization, normal-mode analysis, molecular dynamics, and Monte Carlo simulation. Using Python, the second edition includes numerous examples and program modules for each simulation technique, allowing the reader to perform the calculations and appreciate the inherent difficulties involved in each. This is a valuable resource for researchers and graduate students wanting to know how to use atomic-scale molecular simulations. Supplementary material, including the program library and technical information, available through www.cambridge.org/9780521852524.
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