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(Ebook) Thermal Physics: Thermodynamics and Statistical Mechanics for Scientists and Engineers by Robert Floyd Sekerka ISBN 9780128033043, 9781551571645, 9781671681712, 0128033045, 1551571641, 1671681711

  • SKU: EBN-6745272
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Instant download (eBook) Thermal Physics: Thermodynamics and Statistical Mechanics for Scientists and Engineers after payment.
Authors:Robert Floyd Sekerka
Pages:610 pages.
Year:2015
Editon:1
Publisher:Elsevier, Sekerka, R. F. (Robert F.)
Language:english
File Size:5.19 MB
Format:pdf
ISBNS:9780128033043, 9781551571645, 9781671681712, 0128033045, 1551571641, 1671681711
Categories: Ebooks

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(Ebook) Thermal Physics: Thermodynamics and Statistical Mechanics for Scientists and Engineers by Robert Floyd Sekerka ISBN 9780128033043, 9781551571645, 9781671681712, 0128033045, 1551571641, 1671681711

In Thermal Physics: Thermodynamics and Statistical Mechanics for Scientists and Engineers, the fundamental laws of thermodynamics are stated precisely as postulates and subsequently connected to historical context and developed mathematically. These laws are applied systematically to topics such as phase equilibria, chemical reactions, external forces, fluid-fluid surfaces and interfaces, and anisotropic crystal-fluid interfaces.Statistical mechanics is presented in the context of information theory to quantify entropy, followed by development of the most important ensembles: microcanonical, canonical, and grand canonical. A unified treatment of ideal classical, Fermi, and Bose gases is presented, including Bose condensation, degenerate Fermi gases, and classical gases with internal structure. Additional topics include paramagnetism, adsorption on dilute sites, point defects in crystals, thermal aspects of intrinsic and extrinsic semiconductors, density matrix formalism, the Ising model, and an introduction to Monte Carlo simulation.Throughout the book, problems are posed and solved to illustrate specific results and problem-solving techniques.Includes applications of interest to physicists, physical chemists, and materials scientists, as well as materials, chemical, and mechanical engineersSuitable as a textbook for advanced undergraduates, graduate students, and practicing researchersDevelops content systematically with increasing order of complexitySelf-contained, including nine appendices to handle necessary background and technical details
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