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OverviewComputer simulations provide an essential set of tools for understanding the macroscopic properties of liquid crystals and of their phase transitions in terms of molecular models. While simulations of liquid crystals are based on the same general Monte Carlo and molecular dynamics techniques as are used for other fluids, they present a number of specific problems and peculiarities connected to the intrinsic properties of these mesophases. The field of computer simulations of anisotropic fluids is interdisciplinary and is evolving very rapidly. The present volume covers a variety of techniques and model systems, from lattices to hard particle and Gay-Berne to atomistic, for thermotropics, lyotropics, and some biologically interesting liquid crystals. Full Product DetailsAuthor: Paolo Pasini , Claudio ZannoniPublisher: Springer Imprint: Springer Edition: Softcover reprint of the original 1st ed. 2000 Volume: 545 Dimensions: Width: 15.50cm , Height: 2.80cm , Length: 23.30cm Weight: 0.750kg ISBN: 9780792360995ISBN 10: 0792360990 Pages: 427 Publication Date: 31 December 1999 Audience: College/higher education , Professional and scholarly , Postgraduate, Research & Scholarly , Professional & Vocational Format: Paperback Publisher's Status: Active Availability: Out of stock ![]() The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available. Table of Contents1 Introduction to simulations and statistical mechanics.- 2 Liquid crystal observables: static and dynamic properties.- 3 Phase behavior of lyotropic liquid crystals.- 4 Modelling liquid crystal structure, phase behaviour and large-scale phenomena.- 5 Liquid crystal lattice models I. Bulk systems.- 6 Liquid crystal lattice models II. Confined systems.- 7 Computer simulation of lyotropic liquid crystals as models of biological membranes.- 8 Flow properties and structure of anisotropic fluids studied by non-equilibrium molecular dynamics, and flow properties of other complex fluids: polymeric liquids, ferro-fluids and magneto-rheological fluids.- 9 Self atom-atom empirical potentials for the static and dynamic simulation of condensed phases.- 10 Atomistic modelling of liquid crystal phases.- 11 Atomistic simulation and modeling of smectic liquid crystals.- 12 Multiple time steps algorithms for the atomistic simulations of complex molecular systems.- 13 Parallel molecular dynamics techniques for the simulation of anisotropic systems.ReviewsAuthor InformationTab Content 6Author Website:Countries AvailableAll regions |