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An Introduction to the Statistical Theory of Classical Simple Dense Fluids

An Introduction to the Statistical Theory of Classical Simple Dense Fluids
Author: G.H.A. Cole
Publisher: Elsevier
Total Pages: 298
Release: 2014-06-28
Genre: Technology & Engineering
ISBN: 1483214591

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An Introduction to the Statistical Theory of Classical Simple Dense Fluids covers certain aspects of the study of dense fluids, based on the analysis of the correlation effects between representative small groupings of molecules. The book starts by discussing empirical considerations including the physical characteristics of fluids; measured molecular spatial distribution; scattering by a continuous medium; the radial distribution function; the mean potential; and the molecular motion in liquids. The text describes the application of the theories to the description of dense fluids (i.e. interparticle force, classical particle trajectories, and the Liouville Theorem) and the deduction of expressions for the fluid thermodynamic functions. The theory of equilibrium short-range order by using the concept of closure approximation or total correlation; some numerical consequences of the equilibrium theory; and irreversibility are also looked into. The book further tackles the kinetic derivation of the Maxwell-Boltzmann (MB) equation; the statistical derivation of the MB equation; the movement to equilibrium; gas in a steady state; and viscosity and thermal conductivity. The text also discusses non-equilibrium liquids. Physicists, chemists, and engineers will find the book invaluable.


The Statistical Theory of Liquids

The Statistical Theory of Liquids
Author: Iosif Zalmanovich Fisher
Publisher:
Total Pages: 276
Release: 1964
Genre: Fluids
ISBN:

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Fundamental Theory of Liquids, Method of Distribution Functions

Fundamental Theory of Liquids, Method of Distribution Functions
Author: G. A. Martynov
Publisher: CRC Press
Total Pages: 500
Release: 1992-03-26
Genre: Art
ISBN:

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This monograph concentrates on the statistical mechanics of fluid systems in equilibrium. The approach is classical. It shows how macroscopic properties of matter (structure, thermodynamic) can be calculated ab initio from knowledge of a few microscopic quantities. Dealing predominantly with liquids, the treatment of gases is included as a specific example. Accessible to both experimentalists & theorists, chapters can be referred to independently making this a useful handbook. A valuable monograph for postgraduate students & researchers in the fields of statistical physics, physical chemistry, chemical engineering & theoretical chemistry.


Physical Review

Physical Review
Author:
Publisher:
Total Pages: 1764
Release: 1993-05
Genre: Fluids
ISBN:

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Publishes papers that report results of research in statistical physics, plasmas, fluids, and related interdisciplinary topics. There are sections on (1) methods of statistical physics, (2) classical fluids, (3) liquid crystals, (4) diffusion-limited aggregation, and dendritic growth, (5) biological physics, (6) plasma physics, (7) physics of beams, (8) classical physics, including nonlinear media, and (9) computational physics.


A Concise Course on the Theory of Classical Liquids

A Concise Course on the Theory of Classical Liquids
Author: Andrés Santos
Publisher: Springer
Total Pages: 0
Release: 2016-05-14
Genre: Science
ISBN: 9783319296661

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This short primer offers non-specialist readers a concise, yet comprehensive introduction to the field of classical fluids – providing both fundamental information and a number of selected topics to bridge the gap between the basics and ongoing research. In particular, hard-sphere systems represent a favorite playground in statistical mechanics, both in and out of equilibrium, as they represent the simplest models of many-body systems of interacting particles, and at higher temperature and densities they have proven to be very useful as reference systems for real fluids. Moreover, their usefulness in the realm of soft condensed matter has become increasingly recognized – for instance, the effective interaction among (sterically stabilized) colloidal particles can be tuned to almost perfectly match the hard-sphere model. These lecture notes present a brief, self-contained overview of equilibrium statistical mechanics of classical fluids, with special applications to both the structural and thermodynamic properties of systems made of particles interacting via the hard-sphere potential or closely related model potentials. In particular it addresses the exact statistical-mechanical properties of one-dimensional systems, the issue of thermodynamic (in)consistency among different routes in the context of several approximate theories, and the construction of analytical or semi-analytical approximations for the structural properties. Written pedagogically at the graduate level, with many figures, tables, photographs, and guided end-of-chapter exercises, this introductory text benefits students and newcomers to the field alike.


Nonequilibrium Statistical Mechanics of Heterogeneous Fluid Systems

Nonequilibrium Statistical Mechanics of Heterogeneous Fluid Systems
Author: Andrei G. Bashkirov
Publisher: CRC Press
Total Pages: 180
Release: 2020-10-07
Genre: Science
ISBN: 1000141152

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There is a wide variety of heterogeneous fluid systems that possess interphase surfaces. This monograph is devoted to pioneering studies in nonequilibrium statistical mechanics of such systems. Starting from the Liouville equation, the equations of surface hydrodynamics are derived with allowance for discontinuities of thermodynamic parameters of interphase boundaries. Brownian motion of a large solid particle in a fluid and nucleation are treated as results of fluctuations of flows across particle surfaces. With the use of the Gibbs method, a shock wave in a gas is considered as a sort of an interphase surface, and the surface tension of a shock front is introduced for the first time.