Theory and Simulation of Hard-Sphere Fluids and Related Systems

Theory and Simulation of Hard-Sphere Fluids and Related Systems [electronic resource] / edited by Ángel Mulero. - XXVII, 546 p. online resource. - Lecture Notes in Physics, 753 0075-8450 ; . - Lecture Notes in Physics, 753 .

Structure of Hard Spheres and Related Systems -- to the Thermodynamics of Hard Spheres and Related Systems -- Equations of State for Hard Spheres and Hard Disks -- Application of Hard-Sphere and Hard-Disk Equations of State to the Weeks–Chandler–Andersen Reference System -- Binary Mixtures of Additive Hard Spheres. Simulations and Theories -- Alternative Approaches to the Equilibrium Properties of Hard-Sphere Liquids -- Density Functional Theories of Hard Particle Systems -- Ensemble Effects in Small Systems -- Modelling of Transport Properties of Hard Sphere Fluids and Related Systems, and its Applications -- Kinetic Theory for Binary Granular Mixtures at Low Density.

Hard spheres and related objects (hard disks and mixtures of hard systems) are paradigmatic systems: indeed, they have served as a basis for the theoretical and numerical development of a number of fields, such as general liquids and fluids, amorphous solids, liquid crystals, colloids and granular matter, to name but a few. The present volume introduces and reviews some important basics and progress in the study of such systems. Their structure, thermodynamic properties, equations of state, as well as kinetic and transport properties are considered from different and complementary points of view. This book addresses graduate students, lecturers as well as researchers in statistical mechanics, physics of liquids, physical chemistry and chemical engineering.

9783540787679

10.1007/978-3-540-78767-9 doi


Chemistry, Physical organic.
Mechanics, applied.
Chemical engineering.
Classical and Continuum Physics.
Physical Chemistry.
Soft and Granular Matter, Complex Fluids and Microfluidics.
Theoretical and Applied Mechanics.
Complex Systems.
Industrial Chemistry/Chemical Engineering.

QC6.4.C6

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