Thermodynamics for engineers
著者
書誌事項
Thermodynamics for engineers
(CRC mechanical engineering series / series editor, Frank A. Kulacki)
CRC Press, c2012
2nd ed
- : hbk
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注記
Includes index
内容説明・目次
内容説明
Aspiring engineers need a text that prepares them to use thermodynamics in professional practice. Thermodynamics instructors need a concise textbook written for a one-semester undergraduate course-a text that foregoes clutter and unnecessary details but furnishes the essential facts and methods.
Thermodynamics for Engineers, Second Edition continues to fill both those needs. Paying special attention to the learning process, the author has developed a unique, practical guide to classical thermodynamics. His approach is remarkably cohesive. For example, he develops the same example through his presentation of the first law and both forms of the second law-entropy and exergy. He also unifies his treatments of the conservation of energy, the creation of entropy, and the destruction of availability by using a balance equation for each, thus emphasizing the commonality between the laws and allowing easier comprehension and use.
This Second Edition includes a new chapter on thermodynamic property relations and gives updated, expanded problem sets in every chapter. Accessible, practical, and cohesive, the text builds a solid foundation for advanced engineering studies and practice. It exposes students to the "big picture" of thermodynamics, and its streamlined presentation allows glimpses into important concepts and methods rarely offered by texts at this level.
What's New in This Edition:
Updated and expanded problem sets
New chapter on thermodynamic property relations
Updated chapter on heat transfer
Electronic figures available upon qualifying course adoption
End-of-chapter poems to summarize engineering principles
目次
Concepts, Definitions, and the Laws of Thermodynamics. Properties of Pure Substances. Mass Conservation and the First Law of Thermodynamics. Second Law of Thermodynamics and Entropy. Exergy (Availability) Analysis. Vapor Power Systems. Thermodynamic Property Relations. Principles of Energy (Heat) Transfer. Appendices. Answers to Problems. Index.
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