Thermodynamics: An Engineering Approach (inbunden)
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Format
Inbunden (Hardback)
Språk
Engelska
Antal sidor
1024
Utgivningsdatum
2014-02-16
Upplaga
8
Förlag
McGraw-Hill Education
Medarbetare
Boles, Michael
Illustrationer
illustrations
Dimensioner
254 x 203 x 38 mm
Vikt
1973 g
Antal komponenter
1
Komponenter
GAMEBOARD
ISBN
9780073398174
Thermodynamics: An Engineering Approach (inbunden)

Thermodynamics: An Engineering Approach

Inbunden Engelska, 2014-02-16
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thermodynamics, an engineering approach, eighth edition, covers the basic principles of thermodynamics while presenting a wealth of real-world engineering examples so students get a feel for how thermodynamics is applied in engineering practice. This text helps students develop an intuitive understanding by emphasizing the physics and physical arguments. Cengel and Boles explore the various facets of thermodynamics through careful explanations of concepts and use of numerous practical examples and figures, having students develop necessary skills to bridge the gap between knowledge and the confidence to properly apply their knowledge.

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Yunus A. engel is Professor Emeritus of Mechanical Engineering at the University of Nevada, Reno. He received his B.S. in mechanical engineering from Istanbul Technical University and his M.S. and Ph.D. in mechanical engineering from North Carolina State University. His areas of interest are renewable energy, energy efficiency, energy policies, heat transfer enhancement, and engineering education. He served as the director of the Industrial Assessment Center (IAC) at the University of Nevada, Reno, from 1996 to 2000. He has led teams of engineering students to numerous manufacturing facilities in Northern Nevada and California to perform industrial assessments, and has prepared energy conservation, waste minimization, and productivity enhancement reports for them. He has also served as an advisor for various government organizations and corporations. Dr. engel is also the author or coauthor of the widely adopted textbooks Differential Equations for Engineers and Scientists (2013), Fundamentals of Thermal-Fluid Sciences (5th ed., 2017), Fluid Mechanics: Fundamentals and Applications (4th ed., 2018), Thermodynamics: An Engineering Approach (9th ed., 2019), and Heat and Mass Transfer: Fundamentals and Applications (6th ed., 2020), and all published by McGraw-Hill Education. Some of his textbooks have been translated into Chinese (Long and Short Forms), Japanese, Korean, Spanish, French, Portuguese, Italian, Turkish, Greek, Tai, and Basq. Dr. engel is the recipient of several outstanding teacher awards, and he has received the ASEE Meriam/Wiley Distinguished Author Award for excellence in authorship in 1992 and again in 2000. Dr. engel is a registered Professional Engineer in the State of Nevada, and is a member of the American Society of Mechanical Engineers (ASME) and the American Society for Engineering Education (ASEE).



New Page 1 Michael A. Boles is Associate Professor of Mechanical and Aerospace Engineering at North Carolina State University (NCSU), where he earned his Ph.D. in mechanical engineering and is an Alumni Distinguished Professor. Dr. Boles has received numerous awards and citations for excellence as an engineering educator. He is a past recipient of the SAE Ralph R. Teetor Education Award and has been twice elected to the NCSU Academy of Outstanding Teachers. The NCSU ASME student section has consistently recognized him as the outstanding teacher of the year and the faculty member having the most impact on mechanical engineering students. Dr. Boles specializes in heat transfer and has been involved in the analytical and numerical solution of phase change and drying of porous media. He is a member of the American Society of Mechanical Engineers, the American Society for Engineering Education, and Sigma Xi. Dr. Boles received the ASEE Meriam/Wiley Distinguished Author Award in 1992 for excellence in authorship.

Innehållsförteckning

1) introduction and basic concepts

2) energy, energy transfer, and general energy analysis

3) properties of pure substances

4) energy analysis of closed systems

5) mass and energy analysis of control volumes

6) the second law of thermodynamics

7) entropy

8) exergy

9) gas power cycles

10) vapor and combined power cycles

11) refrigeration cycles

12) thermodynamic property relations

13) gas mixtures

14) gas vapor mixtures and air-conditioning

15) chemical reactions

16) chemical and phase equilibrium

17) compressible flow

18) renewable energy (web chapter)

appendix 1 - property tables and charts (si units)

appendix 2 - property tables and charts (english units)