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E-raamat: Variational Methods in Molecular Modeling

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This book presents tutorial overviews for many applications of variational methods to molecular modeling. Topics discussed include the Gibbs-Bogoliubov-Feynman variational principle, square-gradient models, classical density functional theories, self-consistent-field theories, phase-field methods, Ginzburg-Landau and Helfrich-type phenomenological models, dynamical density functional theory, and variational Monte Carlo methods. Illustrative examples are given to facilitate understanding of the basic concepts and quantitative prediction of the properties and rich behavior of diverse many-body systems ranging from inhomogeneous fluids, electrolytes and ionic liquids in micropores, colloidal dispersions, liquid crystals, polymer blends, lipid membranes, microemulsions, magnetic materials and high-temperature superconductors. 

All chapters are written by leading experts in the field and illustrated with tutorial examples for their practical applications to specific subjects. With emphasis placed on physical understanding rather than on rigorous mathematical derivations, the content is accessible to graduate students and researchers in the broad areas of materials science and engineering, chemistry, chemical and biomolecular engineering, applied mathematics, condensed-matter physics, without specific training in theoretical physics or calculus of variations.
Variational Methods in Statistical Thermodynamics---A Pedagogical Introduction
1(30)
Zhen-Gang Wang
Square-Gradient Model for Inhomogeneous Systems: From Simple Fluids to Microemulsions, Polymer Blends and Electronic Structure
31(34)
Jianzhong Wu
Classical Density Functional Theory for Molecular Systems
65(36)
Jianzhong Wu
Classical Density Functional Theory of Polymer Fluids
101(36)
Jan Foreman
Clifford E. Woodward
Variational Perturbation Theory for Electrolyte Solutions
137(18)
Leo Lue
Self-consistent Field Theory of Inhomogeneous Polymeric Systems
155(26)
An-Chang Shi
Variational Methods for Biomolecular Modeling
181(42)
Guo-Wei Wei
Yongcheng Zhou
A Theoretician's Approach to Nematic Liquid Crystals and Their Applications
223(32)
Apala Majumdar
Alexander H. Lewis
Dynamical Density Functional Theory for Brownian Dynamics of Colloidal Particles
255(30)
Hartmut Lowen
Introduction to the Variational Monte Carlo Method in Quantum Chemistry and Physics
285(30)
Brenda Rubenstein
Appendix: Calculus of Variations 315
Dr. Jianzhong Wu is a professor of Chemical Engineering and a cooperating faculty member of Mathematics Department at the University of California, Riverside. His research is focused on the development and application of statistical-mechanical methods, in particular density functional theory, for predicting the microscopic structure and physiochemical properties of confined fluids, soft materials and biological systems.