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Thursday, July 23, 2020 | History

5 edition of Non-Equilibrium Thermodynamics With Application to Solids found in the catalog.

Non-Equilibrium Thermodynamics With Application to Solids

W. Muschik

Non-Equilibrium Thermodynamics With Application to Solids

by W. Muschik

  • 96 Want to read
  • 7 Currently reading

Published by Springer .
Written in English

    Subjects:
  • Engineering (General),
  • Mechanics - General,
  • Mechanical Properties Of Materials,
  • Thermodynamics (Engineering),
  • Technology & Industrial Arts,
  • Science/Mathematics

  • Edition Notes

    Cism International Centre for Mechanical Sciences Courses and Lectures

    The Physical Object
    FormatPaperback
    Number of Pages329
    ID Numbers
    Open LibraryOL10155106M
    ISBN 100387824537
    ISBN 109780387824536

      This book treats irreversible processes and phenomena — non-equilibrium thermodynamics. S. R. de Groot and P. Mazur, Professors of Theoretical Physics, present a comprehensive and insightful survey of the foundations of the field, providing the only complete discussion of the fluctuating linear theory of irreversible thermodynamics.5/5(1).   Non-Equilibrium Thermodynamics With Applications Edited by Dick Bedeaux, Signe Kjelstrup, and Jan V. Sengers Royal Society of Chemistry pages $ Hardcover Experimental Thermodynamics Series; Volume X QC Chemists review efforts during the past decade to extend classical non-equilibrium thermodynamics to wider applications.

    Several statements—such as the three laws of phenomenological thermodynamics, the embedding theorem and the adiabatical uniqueness—are used to get rid of non-equilibrium entropy as a primitive. Written by the winner of the Nobel Prize in Chemistry, this groundbreaking monograph is an essential work for researchers and graduate students. Topics include the Liouville equation, anharmonic solids, Brownian motion, weakly coupled gases, scattering theory and short-range forces, approach to equilibrium in ionized gases, general kinetic equations, and other topics.

      This book treats irreversible processes and phenomena — non-equilibrium thermodynamics. S. R. de Groot and P. Mazur, Professors of Theoretical Physics, present a comprehensive and insightful survey of the foundations of the field, providing the only complete discussion of the fluctuating linear theory of irreversible : Dover Publications. Non-equilibrium thermodynamics.P Ván HAS RCP, Department of Theoretical Physics, 4 Heat conduction Heat conduction beyond Fourier 5 Rheology of solids 6 Summary 2/ Introduction Thermodynamics Equilibrium T;E;T(E) statics Ordinary E(t);T(E(t)) homogeneous Non-equilibrium e Roasted book experiment 26/ Roasted book experiment - the.


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Non-Equilibrium Thermodynamics With Application to Solids by W. Muschik Download PDF EPUB FB2

The third part is devoted to extended thermodynamics. The basic ideas, phenomenological as well as microscopical, are reviewed and applied to thermo- and viscoelastic materials.

Electromagnetic solids showing dielectric relaxation, such as ceramics, showing electromagneto-mechanical hysteresis and superconductivity are treated in the fourth part. Introduction. This book puts emphasis on developing the basic ideas behind the different approaches to non-equilibrium thermodynamics and on applying them to solids.

After a survey about different approaches an introduction to their common fundamentals is given in the first part. In the second part the mechanical behavior of special materials such as viscoelasticity, viscoplasticity, viscoelastoplasticity, and thermoplasticity.

`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 Non-Equilibrium Thermodynamics With Application to Solids book pedagogic introduction, a comprehensive reference manual, and an original research monograph.3/5(1).

Summary: This book puts emphasis on developing the basic ideas behind the different approaches to non-equilibrium thermodynamics and on applying them to solids.

Electromagnetic solids showing dielectric relaxation, such as ceramics, showing electromagneto-mechanical hysteresis and superconductivity are treated in the fourth part. Summary: This book puts emphasis on developing the basic ideas behind the different approaches to non-equilibrium thermodynamics and on applying them to solids.

After a survey about different approaches an introduction to their common fundamentals is given in the first part.

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.

Haupt P. () Thermodynamics of Solids. In: Muschik W. (eds) Non-Equilibrium Thermodynamics with Application to Solids. International Centre for Mechanical Sciences (Courses and Lectures), vol Cited by: This book aims at providing for a systematic presentation of Extended Non-Equilibrium Thermodynamics in nanosystems with a high degree of applicability.

Furthermore, the book deals with how physical properties of systems behave as a function of their size. To introduce the basic purpose of non-equilibrium thermodynamics, we start with a simple example of heat diffusion in an insulating solid (heat transport occurs by lattice vibration, not via net transport of particles) [1].

We extend the above equilibrium example example to a continuum Size: KB. Thermodynamics of Non-Equilibrium Processes for Chemists with a Particular Application to Catalysis consists of materials adapted from lectures on the thermodynamics of nonequilibrium processes that have been taught at the Department of Natural Sciences of Novosibirsk State University since Nonequilibrium thermodynamics is a branch of thermodynamics that deals with physical systems that are not in thermodynamic equilibrium but can be adequately described in terms of variables (nonequilibrium state variables) that represent an extrapolation of the variables used to specify the system in thermodynamic equilibrium.

Nonequilibrium thermodynamics is concerned with. This book aims at providing for a systematic presentation of Extended Non-Equilibrium Thermodynamics in nanosystems with a high degree of applicability.

Furthermore, the book deals with how physical properties of systems behave as a function of their by: 1. The book develops a general technique to construct nonlinear evolution equations describing non-equilibrium processes, while also developing a geometric context for non-equilibrium thermodynamics.

Solid materials are the main focus in this volume, but the construction is shown to also apply to fluids.5/5(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. Book Description Extended Non-Equilibrium Thermodynamics provides powerful tools departing not from empirical or statistical considerations but from fundamental thermodynamic laws, proposing final solutions that are readily usable and recognizable for students, researchers and industry.

The cornerstones of the authors' treatment are (i) the physical concepts of lattice defects, (ii) the phenomenological description provided by non-equilibrium thermodynamics and (iii) the various methods of statistical mechanics used to link these (kinetic theory, random-walk Cited by: The study of thermodynamics is especially timely today, as its concepts are being applied to problems in biology, biochemistry, electrochemistry, and engineering.

This book treats irreversible processes and phenomena — non-equilibrium thermodynamics.S. de Groot and P. Mazur, Professors of Theoretical Physics, present a comprehensive and insightful survey of the foundations of the field. Classic monograph treats the irreversible processes and phenomena of thermodynamics: non-equilibrium thermodynamics.

Covers statistical foundations and applications of the field with special chapters on fluctuation theory, theory of stochastic processes, kinetic theory of gases, derivation of the Onsager reciprocal relations, more.

4 black-and-white illustrations. "Understanding Non-equilibrium Thermodynamics is a self contained concise but rigorous book introducing the reader to the basic concepts of the thermodynamical process of the nature. The up-to-date references at the end of the book are valuable.

Non-Equilibrium Thermodynamics (Dover Books on Physics series) by S. De Groot. The study of thermodynamics is especially timely today, as its concepts are being applied to problems in biology, biochemistry, electrochemistry, and engineering.

This book treats irreversible processes and phenomena — non-equilibrium thermodynamics.S. Experimental Thermodynamics Volume X book. Read reviews from world’s largest community for readers. Non-Equilibrium Thermodynamics with Applications” as Want to Read: Covering recent developments in the theory of non-equilibrium thermodynamics and its applications, this title is aimed at a predominantly, but not exclusively.

Classic monograph treats the irreversible processes and phenomena of thermodynamics: non-equilibrium thermodynamics. Covers statistical foundations and applications of the field with special chapters on fluctuation theory, theory of stochastic processes, kinetic theory of gases, derivation of the Onsager reciprocal relations, more.

4 black-and-white illustrations.4/5(4).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 them.