9780444641120-0444641122-Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Systems

Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Systems

ISBN-13: 9780444641120
ISBN-10: 0444641122
Edition: 4
Author: Yasar Demirel, Vincent Gerbaud
Publication date: 2018
Publisher: Elsevier
Format: Paperback 880 pages
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Book details

ISBN-13: 9780444641120
ISBN-10: 0444641122
Edition: 4
Author: Yasar Demirel, Vincent Gerbaud
Publication date: 2018
Publisher: Elsevier
Format: Paperback 880 pages

Summary

Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Systems (ISBN-13: 9780444641120 and ISBN-10: 0444641122), written by authors Yasar Demirel, Vincent Gerbaud, was published by Elsevier in 2018. With an overall rating of 4.3 stars, it's a notable title among other Chemical (Physical & Theoretical, Chemistry, Engineering) books. You can easily purchase or rent Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Systems (Paperback) from BooksRun, along with many other new and used Chemical books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Systems, Fourth Edition emphasizes the unifying role of thermodynamics in analyzing natural phenomena. This updated edition expands on the third edition by focusing on the general balance equations for coupled processes of physical, chemical and biological systems. Updates include stochastic approaches, self-organization criticality, ecosystems, mesoscopic thermodynamics, constructual law, quantum thermodynamics, fluctuation theory, information theory, and modeling the coupled biochemical systems. The book also emphasizes nonequilibrium thermodynamics tools, such as fluctuation theories, mesoscopic thermodynamic analysis, information theories, and quantum thermodynamics in describing and designing small scale systems.

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