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Thermodynamics of Materials: A Classical and Statistical Synthesis
 
 
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Thermodynamics of Materials: A Classical and Statistical Synthesis [Hardcover]

John B. Hudson (Author)

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Book Description

047131143X 978-0471311430 January 1996 1
Thermodynamics of Materials A Classical and Statistical Synthesis

Designed as a reference resource for practicing professionals as well as a text for advanced students, Thermodynamics of Materials offers a lucid presentation that ties together classical and statistical treatments of thermodynamics within the framework of materials science. Unlike most books in the field, it emphasizes the natural connection between these two approaches, both as a way of obtaining useful information about real systems, and as a way of showing the relations between the molecular-level properties of systems, and their properties on a macroscopic scale. In this regard, the author's aim throughout the text is to introduce the rigorous, general relations that arise from classical thermodynamics, which are system independent, and then to use statistical thermodynamic relations to calculate the expected values of the macroscopic thermodynamic parameters of the systems.

Thermodynamics of Materials includes a review of classical thermodynamics, an introduction to statistical thermodynamics, and numerous practical problems in thermodynamics, especially those involving phase and chemical equilibrium. Handy appendices enhance the value of this outstanding text.

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Editorial Reviews

From the Publisher

Demystifies the subject by demonstrating the natural connection between classical and statistical approaches to thermodynamics, both as a means of obtaining useful information about existing systems and illustrating the relation between the molecular and macroscopic level properties of systems. Presents practical problems (particularly those involving phase and chemical equilibrium) in terms of classical thermodynamic equations and solves them using the techniques of statistical thermodynamics.

From the Back Cover

Thermodynamics of Materials A Classical and Statistical Synthesis

Designed as a reference resource for practicing professionals as well as a text for advanced students, Thermodynamics of Materials offers a lucid presentation that ties together classical and statistical treatments of thermodynamics within the framework of materials science. Unlike most books in the field, it emphasizes the natural connection between these two approaches, both as a way of obtaining useful information about real systems, and as a way of showing the relations between the molecular-level properties of systems, and their properties on a macroscopic scale. In this regard, the author's aim throughout the text is to introduce the rigorous, general relations that arise from classical thermodynamics, which are system independent, and then to use statistical thermodynamic relations to calculate the expected values of the macroscopic thermodynamic parameters of the systems.

Thermodynamics of Materials includes a review of classical thermodynamics, an introduction to statistical thermodynamics, and numerous practical problems in thermodynamics, especially those involving phase and chemical equilibrium. Handy appendices enhance the value of this outstanding text.


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Inside This Book (learn more)
First Sentence:
The basic purpose of this course is to develop the techniques of classical and statistical thermodynamics in tandem and to show how these techniques can be used to describe the equilibrium properties and behavior of systems of interest to materials scientists and engineers. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
distributive equilibrium, total molar properties, ideal lattice gas, closed isothermal system, quasichemical model, open isothermal system, quantum number space, net repulsive interaction, allowed vibrational modes, available quantum states, canonical ensemble partition function, monatomic ideal gas, partial molar properties, communal entropy, infinitesimal process, allowed quantum states, thermodynamic state functions, using statistical thermodynamics, available energy states, allowed wavelengths, criteria for equilibrium, distinguishable particles, given quantum state, statistical mechanical treatment, ideal monatomic gas
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, John Wiley, Molecular Thermodynamics, Statistical Physics, San Francisco, Thermal Physics, Ellis Horwood, North Holland, Metallurgical Thermodynamics, Englewood Cliffs, States of Matter, Methods of Thermodynamics, Materials Systems, Principles of Phase Diagrams, Thermodynamics of Materials
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