Fundamentals of Thermal-Fluid Sciences, Sixth Edition, is an abbreviated version of standard thermodynamics, fluid mechanics, and heat transfer texts, covering topics that the majority of engineering students will need in their professional lives. The text is well-suited for curriculums that have a common introductory course or a two-course sequence on thermal-fluid sciences. The book addresses tomorrow's engineers in a simple, yet precise manner, and it leads students toward a clear understanding and firm grasp of the basic principles of thermal-fluid sciences. Special effort has been made to…mehr
Fundamentals of Thermal-Fluid Sciences, Sixth Edition, is an abbreviated version of standard thermodynamics, fluid mechanics, and heat transfer texts, covering topics that the majority of engineering students will need in their professional lives. The text is well-suited for curriculums that have a common introductory course or a two-course sequence on thermal-fluid sciences. The book addresses tomorrow's engineers in a simple, yet precise manner, and it leads students toward a clear understanding and firm grasp of the basic principles of thermal-fluid sciences. Special effort has been made to appeal to readers' natural curiosity and to help students explore the various facets of the exciting subject area of thermal-fluid sciences. To enhance student reading, the sixth edition now includes SmartBook® 2.0. SmartBook 2.0-Our adaptive reading experience has been made more personal, accessible, productive, and mobile.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Yunus A. Çengel 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. Çengel 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. Çengel 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).
Inhaltsangabe
1) Introduction and Overview2) Basic Concepts of Thermodynamics 3) Energy, Energy Transfer, and General Energy Analysis 4) Properties of Pure Substances 5) Energy Analysis of Closed Systems 6) Mass and Energy Analysis of Control Volumes 7) The Second Law of Thermodynamics 8) Entropy 9) Power and Refrigeration Cycles 10) Introduction and Properties of Fluids 11) Fluid Statics 12) Bernoulli and Energy Equations 13) Momentum Analysis of Flow Systems 14) Internal Flow 15) External Flow: Drag and Lift 16) Mechanisms of Heat Transfer 17) Steady Heat Conduction 18) Transient Heat Conduction 19) Forced Convection 20) Natural Convection 21) Radiation Heat Transfer 22) Heat Exchangers Appendix 1 - Property Tables and Charts (SI UNITS) Appendix 2 - Property Tables and Charts (ENGLISH UNITS) >
1) Introduction and Overview2) Basic Concepts of Thermodynamics 3) Energy, Energy Transfer, and General Energy Analysis 4) Properties of Pure Substances 5) Energy Analysis of Closed Systems 6) Mass and Energy Analysis of Control Volumes 7) The Second Law of Thermodynamics 8) Entropy 9) Power and Refrigeration Cycles 10) Introduction and Properties of Fluids 11) Fluid Statics 12) Bernoulli and Energy Equations 13) Momentum Analysis of Flow Systems 14) Internal Flow 15) External Flow: Drag and Lift 16) Mechanisms of Heat Transfer 17) Steady Heat Conduction 18) Transient Heat Conduction 19) Forced Convection 20) Natural Convection 21) Radiation Heat Transfer 22) Heat Exchangers Appendix 1 - Property Tables and Charts (SI UNITS) Appendix 2 - Property Tables and Charts (ENGLISH UNITS) >
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