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 ...
This chapter describes Monte Carlo and molecular dynamics simulations, carried out for simple models...
There are several tools to improve initial structural estimates of a molecule under study. The metho...
A novel density functional theory (DFT) code is described that implements Yang's divide-and-conquer ...
Molecular simulation methods that are relevant to the study of soft condensed matter are reviewed. A...
These are lecture notes for various Summer and Winter schools that I have given. The notes describe ...
The projects comprising my thesis lie in the area of quantum statistical mechanics, and are in line ...
Computation based on molecular models is playing an increasingly important role in biology, biologic...
This thesis investigates the physics of various polymeric systems via the tool of computer simulatio...
A variational approach, based on a discrete representation of the chain, is used to calculate free e...
The thermodynamic properties of single chain polyelectrolyte and protein models are studied using Mo...
Nowadays, the computer simulation methods are powerful tools to understand and to predict the macro...
Statistical Thermodynamics and Molecular Simulation aim at describing the properties of systems that...
The physics of complex environments, though poorly understood, plays a critical role in a wide range...
In this paper we introduce a mean field method for simulating complex molecular systems like liquids...
Biomolecules, such as DNA, RNA, and proteins, are the building blocks of living systems. Each of the...
This chapter describes Monte Carlo and molecular dynamics simulations, carried out for simple models...
There are several tools to improve initial structural estimates of a molecule under study. The metho...
A novel density functional theory (DFT) code is described that implements Yang's divide-and-conquer ...
Molecular simulation methods that are relevant to the study of soft condensed matter are reviewed. A...
These are lecture notes for various Summer and Winter schools that I have given. The notes describe ...
The projects comprising my thesis lie in the area of quantum statistical mechanics, and are in line ...
Computation based on molecular models is playing an increasingly important role in biology, biologic...
This thesis investigates the physics of various polymeric systems via the tool of computer simulatio...
A variational approach, based on a discrete representation of the chain, is used to calculate free e...
The thermodynamic properties of single chain polyelectrolyte and protein models are studied using Mo...
Nowadays, the computer simulation methods are powerful tools to understand and to predict the macro...
Statistical Thermodynamics and Molecular Simulation aim at describing the properties of systems that...
The physics of complex environments, though poorly understood, plays a critical role in a wide range...
In this paper we introduce a mean field method for simulating complex molecular systems like liquids...
Biomolecules, such as DNA, RNA, and proteins, are the building blocks of living systems. Each of the...
This chapter describes Monte Carlo and molecular dynamics simulations, carried out for simple models...
There are several tools to improve initial structural estimates of a molecule under study. The metho...
A novel density functional theory (DFT) code is described that implements Yang's divide-and-conquer ...