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The laws of thermodynamics, property relations, equilibrium, solutions (metallic and polymer) and phase diagrams are covered and applied specifically to the study of materials science in volume one. An introduction to statistical thermodynamics provides a basis for the understanding of equilibrium thermodynamics and contributes to an understanding of kinetics. The author emphasizes the necessity for materials science students to be knowledgeable in both the sciences and engineering and provides background for both. Numerous problems supplement the end of each chapter. Volume two begins with a brief review of macroscopic thermodynamics and then expands into the thermodynamics of defects and interfaces. A strong emphasis is placed on kinetic phenomena with sections on evaporation from surfaces, mean free path of molecules in gases and diffusion. Kinetic phenomena in the solid state topics include nucleation, spinodal decomposition and reaction kinetics. Also covered is the thermodynamics of rubber elasticity.
- Sales Rank: #1361351 in Books
- Published on: 1995-11
- Original language: English
- Number of items: 1
- Dimensions: 9.53" h x .78" w x 6.44" l, 1.20 pounds
- Binding: Paperback
- 242 pages
From the Inside Flap
About the Book Thermodynamics of Materials, Volumes I & II goes beyond traditional texts to illustrate the applicability of thermodynamics to the specific classes of materials that are part of a curriculum in materials science and engineering. The text is written from both science and engineering perspectives so that students will be able to understand and apply the knowledge generated by scientists and communicate with and serve the needs of all engineers. In addition to a presentation based on classical thermodynamics, the text:
- Takes an Open System approach to the First and Second Laws.
- Includes a chapter on Statistical Thermodynamics that provides the background for understanding kinetic mechanisms and the behavior of polymers.
- Treats physical as well as chemical equilibrium to assist student understanding of phase transitions.
- Provides good problem sets that are thoroughly class-tested.
- Discusses surfaces and interfaces—an important area as electronic materials get smaller.
From the Back Cover
John Wiley & Sons, Inc. is proud to announce an important new series of textbooks -- The MIT Series in Materials Science and Engineering. In response to the growing economic and technological importance of polymers, ceramics, and semi-conductors, many materials science and engineering departments are changing and expanding their curricula. The advent of new courses calls for the development of new textbooks that teach the principles of materials science and engineering as they apply to all the classes of materials. The MIT Series in Materials Science and Engineering is designed to fill the needs of this changing curriculum. Based on the undergraduate curriculum of the MIT Department of Materials Science and Engineering, the series will include textbooks for the core courses in the field as well as texts for courses in specific material classes. The first three textbooks in the series will be: Thermodynamics of Materials, Vol. I, by David Ragone (0-471-30885-4) Thermodynamics of Materials, VoL. II, by David Ragone (0-471-30886-2) Physical Ceramics: Principles for Ceramics Science and Engineering, by Yet-Ming Chiang, Dunbar Birnie III, and W. David Kingery (0-471-59873-9)
About the Author
About the Author David V. Ragone received his S. B., S. M., and Sc.D. degrees in metallurgical engineering from MIT. He taught undergraduate and graduate courses in thermodynamics at the University of Michigan in Ann Arbor from 1953 to 1962. From 1962 to 1967, as chairman of the materials department and assistant director of the Hopkins laboratory at the General Atomic Division of General Dynamics, he directed research on materials for advanced, high-temperature, gas-cooled nuclear reactors. He then served as Alcoa Professor of Metallurgy at the Carnegie- Mellon University, where he was also Associate Dean of Urban and Public Affairs. In 1970, he was named dean of the Thayer School at Dartmouth, and returned to the University of Michigan as Dean of Engineering in 1972. In 1980, he was named President of the Case Western University, where he served until 1987. He returned to teaching undergraduate courses in thermodynamics and the physical chemistry of materials at MIT in 1988, and began writing texts shortly thereafter. In addition to his appointment at MIT, David Ragone is a partner in Ampersand Ventures, a firm whose focus is on ventures in specialty materials and chemicals. He has also served as a member of the National Science Board and as a director of more than a dozen public and private companies. His professional society memberships include ASM, AIME, and ACS.
Most helpful customer reviews
2 of 2 people found the following review helpful.
Good Intermediate Materials Science Teat
By Ilona bohm
This review refers to Volume I which was I used in a recent graduate materials thermodynamics course. Completing two prior courses in classical thermodynamics oriented towards mechanical engineering and a survey course in Materials Science proved helpful in providing a background for a better understanding the material in this text. However, the basics are developed but in less detail. The text is definitely oriented towards understanding the basics in the application of thermodynamics to materials science and provides reasonable coverage of chemical equilibrium and binary solutions.
The material is developed sequentially so it is best to start at the beginning and work through each section. Fortunately I had access to most of the typographical errors but they do not represent a major hurdle to the basic quality of the theory presented and its understanding. It would have proved useful to the student had the author included answers to selected problems. Overall, I found this to be a good intermediate text.
0 of 0 people found the following review helpful.
but still useful in referencing thermodynamics and heat transfer
By Jonathan K.
not as well written as the first version, but still useful in referencing thermodynamics and heat transfer problems
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