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Titlebook: Advances in the Computer Simulatons of Liquid Crystals; Paolo Pasini,Claudio Zannoni Book 2000 Kluwer Academic Publishers 2000 complex flu

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期刊全稱(chēng)Advances in the Computer Simulatons of Liquid Crystals
影響因子2023Paolo Pasini,Claudio Zannoni
視頻videohttp://file.papertrans.cn/151/150234/150234.mp4
學(xué)科分類(lèi)Nato Science Series C:
圖書(shū)封面Titlebook: Advances in the Computer Simulatons of Liquid Crystals;  Paolo Pasini,Claudio Zannoni Book 2000 Kluwer Academic Publishers 2000 complex flu
影響因子Computer simulations provide an essential set of tools forunderstanding the macroscopic properties of liquid crystals and oftheir phase transitions in terms of molecular models. Whilesimulations of liquid crystals are based on the same general MonteCarlo and molecular dynamics techniques as are used for other fluids,they present a number of specific problems and peculiarities connectedto the intrinsic properties of these mesophases. .The field of computer simulations of anisotropic fluids isinterdisciplinary and is evolving very rapidly. The present volumecovers a variety of techniques and model systems, from lattices tohard particle and Gay-Berne to atomistic, for thermotropics,lyotropics, and some biologically interesting liquid crystals.Contributions are written by an excellent panel of internationallecturers and provides a timely account of the techniques and problemsin the field.
Pindex Book 2000
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Multiple Time Steps Algorithms for the Atomistic Simulations of Complex Molecular Systems, are represented by a pairwise additive dispersive-repulsive potential and a Coulomb contribution due to the atomic charges. Furthermore, nearby atoms interact through special two body, three body and four body functions representing the valence bonds, bending and torsional interaction energies surfaces.
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Introduction to Simulations and Statistical Mechanics,ents, through linear response theory. Lastly, some technical aspects of Monte Carlo simulation are mentioned, namely importance sampling and the Metropolis method, and, very briefly, the kinds of algorithms used in molecular dynamics.
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Parallel Molecular Dynamics Techniques for the Simulation of Anisotropic Systems,, that can automatically parallelise many programs, have provided a painless route to parallelisation. In addition, the development of that allows purpose-written parallel programs to be ported across many different platforms has removed the problems of . that deterred many people from writing parallel applications.
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Organ and Tissue Transplantationcrystals, and bridging the gap with molecular-scale effects that are hard to model using theories of this kind. Examples will include recent work on structure and dynamics near the isotropic-nematic transition; a study of the smectic-A* twist-grain-boundary phase; and the calculation of orientational elastic coefficients.
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