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Statistical thermodynamics of semico...
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Elyukhin, Vyacheslav A.,
Statistical thermodynamics of semiconductor alloys
Record Type:
Electronic resources : Monograph/item
Title/Author:
Statistical thermodynamics of semiconductor alloysVyacheslav A Elyukhin.
Author:
Elyukhin, Vyacheslav A.,
Published:
Amsterdam, Netherlands :Elsevier,2016.
Description:
1 online resource (226 p.)
Notes:
Description based upon print version of record.
Notes:
4.7.2 Miscibility Gap
Subject:
SemiconductorsMathematical models.
Online resource:
https://www.sciencedirect.com/science/book/9780128039878
ISBN:
9780128039939 (electronic bk.)
Statistical thermodynamics of semiconductor alloys
Elyukhin, Vyacheslav A.,
Statistical thermodynamics of semiconductor alloys
[electronic resource] /Vyacheslav A Elyukhin. - First edition. - Amsterdam, Netherlands :Elsevier,2016. - 1 online resource (226 p.)
Description based upon print version of record.
Includes bibliographical references at the end of each chapters and index.
Front Cover; Statistical Thermodynamics of Semiconductor Alloys; Copyright; Dedication; Contents; Preface; References; 1 -- Semiconductor Materials; 1.1 ELEMENTAL SEMICONDUCTORS; 1.2 SEMICONDUCTOR COMPOUNDS WITH ZINC BLENDE STRUCTURE; 1.3 SEMICONDUCTOR COMPOUNDS WITH WURTZITE STRUCTURE; 1.4 SEMICONDUCTOR COMPOUNDS WITH ROCK SALT STRUCTURE; 1.5 SEMICONDUCTOR COMPOUNDS WITH CHALCOPYRITE STRUCTURE; 1.6 ALLOYS OF ELEMENTAL SEMICONDUCTORS; 1.7 TERNARY ALLOYS OF BINARY COMPOUNDS; 1.8 QUATERNARY ALLOYS OF THREE BINARY COMPOUNDS; 1.9 QUATERNARY ALLOYS OF FOUR BINARY COMPOUNDS
ISBN: 9780128039939 (electronic bk.)Subjects--Topical Terms:
257745
Semiconductors
--Mathematical models.Index Terms--Genre/Form:
214472
Electronic books.
LC Class. No.: TK7871.85 / .E498 2016
Dewey Class. No.: 621.38152015118
Statistical thermodynamics of semiconductor alloys
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Front Cover; Statistical Thermodynamics of Semiconductor Alloys; Copyright; Dedication; Contents; Preface; References; 1 -- Semiconductor Materials; 1.1 ELEMENTAL SEMICONDUCTORS; 1.2 SEMICONDUCTOR COMPOUNDS WITH ZINC BLENDE STRUCTURE; 1.3 SEMICONDUCTOR COMPOUNDS WITH WURTZITE STRUCTURE; 1.4 SEMICONDUCTOR COMPOUNDS WITH ROCK SALT STRUCTURE; 1.5 SEMICONDUCTOR COMPOUNDS WITH CHALCOPYRITE STRUCTURE; 1.6 ALLOYS OF ELEMENTAL SEMICONDUCTORS; 1.7 TERNARY ALLOYS OF BINARY COMPOUNDS; 1.8 QUATERNARY ALLOYS OF THREE BINARY COMPOUNDS; 1.9 QUATERNARY ALLOYS OF FOUR BINARY COMPOUNDS
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1.10 QUATERNARY ALLOYS OF TERNARY COMPOUNDSReferences; 2 -- Elements of Thermodynamics and Statistical Physics; 2.1 CONCEPTS OF THERMODYNAMICS; 2.1.1 Mathematical Formalism of Thermodynamics; 2.1.2 Thermodynamic Systems; 2.1.3 Phase; 2.1.4 Thermodynamic Variables; 2.1.5 Thermodynamic Potential; 2.1.6 Fluctuations; 2.1.7 Thermodynamic Stability; 2.2 MATHEMATICAL FORMALISM OF THERMODYNAMICS; 2.3 CONCEPTS AND BASIC POSTULATE OF STATISTICAL PHYSICS; 2.3.1 Phase Point and Phase Space; 2.3.2 Statistical Equilibrium; 2.3.3 Ensemble; 2.3.4 Partition Function
505
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2.3.5 Basic Postulate of Equilibrium Statistical Physics2.4 MICROCANONICAL ENSEMBLE; 2.5 CANONICAL ENSEMBLE; 2.6 ISOTHERMAL-ISOBARIC ENSEMBLE; 2.7 GRAND CANONICAL ENSEMBLE; 2.8 MACROSCOPIC SYSTEMS; 2.8.1 Additivity of the Configurational Entropy; 2.8.2 Relative Fluctuation of the Internal Energy in the Crystalline Alloy; 2.8.3 Additivity of the Internal Energy; 2.9 FREE ENERGIES OF CONDENSED MATTER; 2.10 EQUIVALENCE OF ENSEMBLES; 2.10.1 The Equivalence of the Canonical and Microcanonical Ensembles; 2.10.2 Equivalence of the Canonical and Isothermal-Isobaric Ensembles
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2.11 SEPARATION OF DEGREES OF FREEDOMReferences; 3 -- Regular Solutions; 3.1 REGULAR SOLUTION MODEL; 3.2 MOLECULAR REGULAR SOLUTIONS OF BINARY COMPOUNDS; 3.2.1 Ternary Alloys; 3.2.2 Quaternary Alloys; References; 4 -- Cluster Variation Method; 4.1 BAKER'S APPROACH; 4.2 ONE-POINT APPROXIMATION FOR BINARY REGULAR SOLUTIONS; 4.2.1 Helmholtz Free Energy and Chemical Potentials; 4.2.2 Miscibility Gap; 4.2.3 Spinodal Decomposition Range; 4.3 ONE-POINT APPROXIMATION FOR TERNARY REGULAR SOLUTIONS; 4.3.1 Helmholtz Free Energy and Chemical Potentials; 4.3.2 Miscibility Gap
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4.3.3 Spinodal Decomposition Range4.4 TWO-POINT APPROXIMATION FOR BINARY REGULAR SOLUTIONS; 4.4.1 Helmholtz Free Energy and Short-Range Order; 4.4.2 Miscibility Gap; 4.5 TWO-POINT APPROXIMATION FOR TERNARY REGULAR SOLUTIONS; 4.5.1 Helmholtz Free Energy and Short-Range Order; 4.5.2 Miscibility Gap; 4.6 THREE-POINT APPROXIMATION FOR BINARY REGULAR SOLUTION WITH TRIANGULAR LATTICE; 4.6.1 Helmholtz Free Energy and Short-Range Order; 4.6.2 Miscibility Gap; 4.7 FOUR-POINT APPROXIMATION FOR BINARY REGULAR SOLUTION WITH SIMPLE SQUARE LATTICE; 4.7.1 Helmholtz Free Energy and Short-Range Order
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https://www.sciencedirect.com/science/book/9780128039878
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