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Fb2 Kinetic Theory and Irreversible Thermodynamics ePub

by Byung Chan Eu

Category: Engineering
Subcategory: Engineering and Transport
Author: Byung Chan Eu
ISBN: 0471615242
ISBN13: 978-0471615248
Language: English
Publisher: Wiley-Interscience; 1 edition (October 8, 1992)
Pages: 752
Fb2 eBook: 1193 kb
ePub eBook: 1642 kb
Digital formats: mobi doc lit txt

This book presents the fundamentals of irreversible thermodynamics for nonlinear transport processes in gases and liquids, as well as for generalized hydrodynamics . Volume 2. Relativistic Theories. Authors: Eu, Byung Chan.

This book presents the fundamentals of irreversible thermodynamics for nonlinear transport processes in gases and liquids, as well as for generalized hydrodynamics extending the classical hydrodynamics of Navier, Stokes, Fourier, and Fick. Together with its companion volume on nonrelativistic. Comprises the second volume of a comprehensive two-volume treatise on irreversible thermodynamics, authored by a major contributor to the field. Highly detailed and rigorously argued throughout.

Start by marking Kinetic Theory and Irreversible Thermodynamics as Want to Read .

Start by marking Kinetic Theory and Irreversible Thermodynamics as Want to Read: Want to Read savin. ant to Read.

This book presents the fundamentals of irreversible thermodynamics for nonlinear transport processes in gases and liquids, as well as for generalized hydrodynamics extending the classical hydrodynamics of Navier, Stokes, Fourier, and Fick. Together with its companion volume on relativistic theories, it provides a comprehensive picture of the kinetic theory formulated from the viewpoint of nonequilibrium ensembles in both nonrelativistic and, in Vol. 2, relativistic contexts.

Byung Chan Eu. This monograph presents, from the viewpoint of continuum mechanics, a newly emerging field of irreversible thermodynamics, in which linear irreversible thermodynamics are extended to the nonlinear regime and macroscopic phenomena far removed from equilibrium ar. . This monograph presents, from the viewpoint of continuum mechanics, a newly emerging field of irreversible thermodynamics, in which linear irreversible thermodynamics are extended to the nonlinear regime and macroscopic phenomena far removed from equilibrium are studied in a manner consistent with the laws of thermodynamics. The tool to develop this thermodynamic theory of irreversible processes are the generalized thermodynamics, which also extends the classical hydrodynamics of Navier, Stokes and Fourier to nonlinear irreversible processes.

Volume 2. This book presents the fundamentals of irreversible thermodynamics for nonlinear transport processes in gases and liquids, as well as for generalized hydrodynamics extending the classical hydrodynamics of Navier, Stokes, Fourier, and Fick.

Kinetic theory provides a rigorous foundation for calculating the dynamics of gas flow at arbitrary degrees of rarefaction, with solutions of the Boltzmann equation requiring numerical methods in many cases of practical interest. Mazen Al-Ghoul. Collective Modes of Chiral Kinetic Theory in Magnetic Field. Kinetic theory provides a rigorous foundation for calculating the dynamics of gas flow at arbitrary degrees of rarefaction, with solutions of the Boltzmann equation requiring numerical methods in many cases of practical interest. Importantly, the near-continuum regime can be examined analytically using asymptotic techniques.

This book presents the fundamentals of irreversible thermodynamics for nonlinear transport processes in gases and liquids, as well as for generalized hydrodynamics extending the classical hydrodynamics of Navier, Stokes, Fourier, and Fick

This book presents the fundamentals of irreversible thermodynamics for nonlinear transport processes in gases and liquids, as well as for generalized hydrodynamics extending the classical hydrodynamics of Navier, Stokes, Fourier, and Fick. Together with its companion volume on nonrelativistic contexts, it provides a comprehensive picture of the relativistic covariant kinetic theory of gases and relativistic hydrodynamics of gases

Extended irreversible thermodynamics is a branch of non-equilibrium thermodynamics that goes beyond the local equilibrium hypothesis of classical irreversible thermodynamics.

Extended irreversible thermodynamics is a branch of non-equilibrium thermodynamics that goes beyond the local equilibrium hypothesis of classical irreversible thermodynamics. The formalism is well-suited for describing high-frequency processes and small-length scales materials.

The author Byung Chan Eu received a BSc degree from Seoul National University, Korea and a PhD degree from . Irreversible Thermodynamics of Heterogeneous Systems. Irreversible Processes in Electromagnetic Fields. Scattering Theory of Particles.

Balance Equations and the First Law of Thermodynamics. The Second Law of Thermodynamics. Kinetic Theory of Dilute Monatomic Gases. Kinetic Theories of Quantum Gases and Gases with InternalStates.

Irreversible Processes in Electromagnetic Field; Scattering Theory of Particles; Kinetic Theory of Dilute Monoatomic Gases; Kinetic Theory of Quantum Gases and Gases with Internal States; Kinetic Theory of Dense Simple Fluids; Trans- port Processes in Dense Simple Fluids.

Irreversible Processes in Electromagnetic Field; Scattering Theory of Particles; Kinetic Theory of Dilute Monoatomic Gases; Kinetic Theory of Quantum Gases and Gases with Internal States; Kinetic Theory of Dense Simple Fluids; Trans- port Processes in Dense Simple Fluids; Kinetic Theory of Dense Polyatomic Fluids; Relativistic Kinetic Theory of Gases and Irreversible Thermodynamics. lt;/p

For almost 20 years the author has conducted research on both macroscopic and molecular theories. The results of his investigation, which can be found in this work, are that irreversible thermodynamics and kinetic theory of matter are not separable especially for nonlinear irreversible processes occurring in systems removed far from equilibrium and thus must be examined together in a mutually consistent manner. Includes coverage of such topics as mass and momentum conservation law, bilinear and quadratic forms for entropy production, viscous phenomena, boundary conditions for velocities and much more.
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