Non-Equilibrium Thermodynamics and its Statistical Foundations (Monographs on the Physics & Chemistry of Materials)

by H. J. Kreuzer

Publisher: Oxford University Press, USA

Written in English
Published: Pages: 485 Downloads: 399
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Subjects:

  • PHYSICS,
  • Statistical Thermodynamics,
  • Business & Economics,
  • Business/Economics,
  • Production & Operations Management
The Physical Object
FormatPaperback
Number of Pages485
ID Numbers
Open LibraryOL9477261M
ISBN 100198513755
ISBN 109780198513759

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Non-Equilibrium Thermodynamics and its Statistical Foundations (Monographs on the Physics & Chemistry of Materials) by H. J. Kreuzer Download PDF EPUB FB2

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The statistical foundations of non-equilibrium thermodynamics are treated in detail, and there are special sections on fluctuation theory, the theory of stochastic processes, the kinetic theory of gases, and the derivation of the Onsager reciprocal by:   'Non-equilibrium Thermodynamics and Statistical Mechanics: Foundations and Applications' builds from basic principles to advanced techniques, and covers the major phenomena, methods, and results of time-dependent systems.

It is a pedagogic introduction, a comprehensive reference manual, and an original research : Phil Attard. `Non-equilibrium Thermodynamics and Statistical Mechanics: Foundations and Applications' builds from basic principles to advanced techniques, and covers the major phenomena, methods, and results of time-dependent systems.

It is a pedagogic introduction, a comprehensive reference manual, and an original research monograph. Download Citation | Non-equilibrium Thermodynamics and Statistical Mechanics: Foundations and Applications | This book builds from basic principles to advanced techniques, and covers the major Author: Phil Attard.

The underpinnings of thermodynamics are discussed in terms of the balance equations of irreversible thermodynamics and linear phenomenological laws.

Stability and fluctuations are considered, along with processes of chemical reactions, Benard convection, and classical statistical mechanics and kinetic theory. The microscopic derivation of balance equations is presented as quantum theory, and Cited by: Non-equilibrium Thermodynamics for Engineers teaches the essence of non-equilibrium thermodynamics and its applications at a level comprehensible to engineering students, practitioner engineers, and scientists working on industrial problems.

The book may be used as a textbook in basic engineering curricula or graduate courses. This book builds from basic principles to advanced techniques, and covers the major phenomena, methods, and results of time-dependent systems. The book treats time-dependent systems by close analogy with their static counterparts, with most of the familiar equilibrium results being generalised to the non-equilibrium case.

The book is notable for its unified treatment of thermodynamics. The statistical foundations of non-equilibrium thermodynamics are treated in detail, and there are special sections on fluctuation theory, the theory of stochastic processes, the kinetic theory of gases, and the derivation of the Onsager reciprocal relations.

The implications of causality conditions and of dispersion relations are analyzed in depth. 'Non-equilibrium Thermodynamics and Statistical Mechanics: Foundations and Applications' builds from basic principles to advanced techniques, and covers the major phenomena, methods, and results of time-dependent systems.

It is a pedagogic introduction, a comprehensive reference manual, and an original research monograph. Book review: Nonequilibrium thermodynamics and its statistical foundation Irwin Oppenheim 1 Journal of Statistical Physics vol pages – () Cite this articleAuthor: Irwin Oppenheim.

Linear nonequilibrium thermodynamics has some fundamental limitations: (1) it does not incorporate mechanisms into its formulation, nor does it provide values for the phenomenological coefficients, and (2) it is based on the local-equilibrium hypothesis, and therefore it is.

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The book begins with a brief review of equilibrium systems and transport and rate processes, then covers the following areas: theory of nonequilibrium thermodynamics; dissipation function; entropy and exergy; analysis and case studies on using the second law of thermodynamics; economic impact of the nonequilibrium thermodynamics theory; analysis of transport and rate processes; membrane.

Title: Non-Equilibrium Thermodynamics and its Statistical Foundations. By H. K REUZER. Clarendon Press, pp. £ Authors: Fiszdon, W.; Wilmanski, K. Non-equilibrium thermodynamics and the production of entropy: life, earth, and beyond Axel Kleidon, Ralph D.

Lorenz The present volume studies the application of concepts from non-equilibrium thermodynamics to a variety of research topics. The book covers recent developments in the theory of non-equilibrium thermodynamics and its applications. Four chapters are devoted to the foundations; an overview chapter is followed by recent results addressing the underlying principles of the theory.

The applications are concerned with bulk systems, with heterogeneous systems where interfaces are central and with process units in industry. Its mathematical framework, steepest-entropy-ascent quantum thermodynamics (SEAQT), can be used to model and describe the non-equilibrium phenomenon of diffusion based on the principle of steepest.

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This timely book has a unique focus. Nonequilibrium Thermodynamics, Second Edition analyzes the transport processes of energy, mass, and momentum transfer processes, as well as chemical reactions. It considers various processes occurring simultaneously, and provides students with more realistic analysis and modeling by accounting possible interactions between Edition: 2.

'Non-equilibrium Thermodynamics and Statistical Mechanics: Foundations and Applications' builds from basic principles to advanced techniques, and covers the major phenomena, methods, and results of time-dependent systems.

It is a pedagogic introduction, a comprehensive reference manual, and an original research monograph. Uniquely, the book treats time-dependent systems by close analogy.

This Is An Introductory Book Which Explains The Foundations Of The Subject And Its Application. It Is Intended Primarily For Graduate Students But May Provide Useful Information And Reading To Science And Engineering Students At All Levels.

It Assumes That Readers Have Knowledge Of Basic Thermodynamics And Quantum Mechanics. With This, The Theory Has Been Developed In A 3/5(1). Non-equilibrium thermodynamics is a branch of thermodynamics that deals with physical systems that are not in thermodynamic equilibrium but can be described in terms of variables (non-equilibrium state variables) that represent an extrapolation of the variables used to specify the system in thermodynamic equilibrium.

Non-equilibrium thermodynamics is concerned with transport processes and with. The book is notable for its unified treatment of thermodynamics, hydrodynamics, stochastic processes, and statistical mechanics, for its self-contained, coherent derivation of a variety of non-equilibrium theorems, and for its quantitative tests against experimental measurements and computer simulations.

Non-equilibrium Thermodynamics for Engineers teaches the essence of non-equilibrium thermodynamics and its applications at a level comprehensible to engineering students, practitioner engineers, and scientists working on industrial problems.

The book may be used as a textbook in basic engineering curricula or graduate courses. Request.Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Systems, Fourth Edition emphasizes the unifying role of thermodynamics in analyzing natural updated edition expands on the third edition by focusing on the general balance equations for coupled processes of physical, chemical and biological systems.Non-equilibrium thermodynamics is a branch of thermodynamics that deals with systems that are not in thermodynamic systems found in nature are not in thermodynamic equilibrium; for they are changing or can be triggered to change over time, and are continuously and discontinuously subject to flux of matter and energy to and from other systems and to chemical reactions.