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Title:
Understanding Molecular Simulation: From Algorithms to Applications |
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Division: Theory & Comput. / Academic Press / 英文版 |
Author/Editor: Daan Frenkel and Berend Smit Star:    |
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ISBN: 0122673700 |
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Introduce Date: 2006年07月27日23:34 , Release Date: 2006年07月27日23:46 |
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Introducer: westwolf , Rate: 19/358 |
| Format: djvu Download |
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| Appraiser: zerg12 | Grade: +4 | Reason: ( 比较容易看明白 ) | | | Appraiser: ydp1984 | Grade: +4 | Reason: ( 这本书不错,写书的作者是该领域的大家,重要讲解分子模拟的算法,对程序的提高很有帮助 ) | | | Appraiser: skyflyzw | Grade: +5 | Reason: ( a good book and translated by wang-wenchuan ) | |
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| Description: |
Understanding Molecular Simulation: From Algorithms to Applications
By: Daan Frenkel Berend Smit
ISBN: 0122673700
Publisher: Academic Press - 1996-08
Hardcover | 443 Pages | List Price: $93.95 (USD)
Product Dimensions: 9.23 x 6.15 x 1.07 inches
Computer simulation techniques have become almost essential in the study of the macro-molecular phenomena and phase behavior on the molecular level. As these techniques become increasingly important, it is necessaryto realize that they are useful tools, but are not the goals of research. With this important distinction in mind, Understanding Molecular Simulation describes simulation techniques along with the physics behind the phenomena that these techniques simulate.
Each chapter is comprised of three components: the general theoretical basis, an outline of the necessary computer code, and a few applications which illustrate the use of the technique demonstrated. The chapters also include examples of the typical practical problems that could be solved using each technique.
Key Features
* Gives a unified presentation of computational tools used to study molecular systems in the equilibrium state
* Describes simulation techniques and physics behind the phenomena simulated
* Emphasizes important topics of phase behavior and computer simulation of macro-molecular (polymer-type) substances
* Includes references to the authors home page where additional information from the authors can be found
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