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Introduction to Materials Science for Engineers (8th Edition), by James F. Shackelford
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This book is intended for use in a first course in Materials Sciences and Engineering taught in the departments of materials science, mechanical, civil and general engineering. It is also a suitable reference for mechanical and civil engineers and machine designers.
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Introduction to Materials Science for Engineers provides balanced, current treatment of the full spectrum of engineering materials, covering all the physical properties, applications and relevant properties associated with engineering materials. It explores all of the major categories of materials while also offering detailed examinations of a wide range of new materials with high-tech applications.
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MasteringEngineering for Introduction to Materials Science for Engineers is a total learning package. This innovative online program emulates the instructor’s office—hour environment, guiding students through engineering concepts from Introduction to Materials Science for Engineers with self-paced individualized coaching.
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Teaching and Learning Experience
This program will provide a better teaching and learning experience–for you and your students. It provides:
- Individualized Coaching with MasteringEngineering : MasteringEngineering emulates the instructor’s office-hour environment using self-paced individualized coaching.
- A Balanced Approach Designed for a First Course in Engineering Materials: This concise textbook covers concepts and applications of materials science for the beginning student.
- Coverage of the Most Important Advances in Engineering Materials: Content is refreshed to provide the most up-to-date information for your course.
- In-text Features that Reinforce Concepts: An assortment of case studies, examples, practice problems, and homework problems give students plenty of opportunities to develop their understanding.
- Enhance Learning with Instructor Supplements: An Instructors Solution Manual and PowerPoint slides are available to expand on the topics presented in the text.
Note: You are purchasing a standalone product; MasteringEngineering does not come packaged with this content. If you would like to purchase both the physical text and MasteringEngineering¿ search for ISBN-10: 0133789713/ISBN-13: 9780133789713. That package includes ISBN-10: 0133826651/ISBN-13: 9780133826654¿ and ISBN-10: 0133828921 /ISBN-13: 9780133828924.
MasteringEngineering is not a self-paced technology and should only be purchased when required by an instructor.
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- Sales Rank: #51177 in Books
- Published on: 2014-04-12
- Original language: English
- Number of items: 1
- Dimensions: 10.00" h x 1.10" w x 8.20" l, .0 pounds
- Binding: Hardcover
- 696 pages
About the Author
James F. Shackelford has BS and MS degrees in Ceramic Engineering from the University of Washington and a Ph.D. in Materials Science and Engineering from the University of California, Berkeley. He is currently Distinguished Professor Emeritus in the Department of Chemical Engineering and Materials Science at the University of California, Davis. For many years, he served as the Associate Dean for Undergraduate Studies in the College of Engineering and later as the Director of the University Honors Program that serves students from a wide spectrum of majors. He teaches and conducts research in the structural characterization and processing of materials, focusing on glasses and biomaterials. A member of the American Ceramic Society and ASM International, he was named a Fellow of the American Ceramic Society in 1992, was named a Fellow of ASM International in 2011, and received the Outstanding Educator Award of the American Ceramic Society in 1996. In 2003, he received a Distinguished Teaching Award from the Academic Senate of the University of California, Davis. In 2012, he received the Outstanding Teaching Award of the College of Engineering at UC Davis. He has published well over 100 archived papers and books including Introduction to Materials Science for Engineers now in its eighth edition and which has been translated into Chinese, German, Italian, Japanese, Korean, Portuguese, and Spanish.
Most helpful customer reviews
3 of 3 people found the following review helpful.
Adequate
By Aric
I used this text in a graduate material science course for civil engineers with little to no background in material science and while in some areas it proved useful, overall I didn't take much away from using it. This is one of those "baby step" the reader through the reading then expect them to become a full-fledged practicing material scientist secluded to his laboratory only exposing himself to the art of his field 24-hours a day when it comes to the questions. Many questions had me scratching my head as to how I was supposed to glean the information from the text to solve them. I would not recommend.
2 of 2 people found the following review helpful.
Chapter 7 Review
By Matthew Mangano
Chapter 7 in this book is titled Thermal Behavior. This chapter discusses the fundamentals of thermal behavior. I think that the author has done a good job of discussing the basics of thermal behavior in materials. The author discusses heat capacity and thermal expansion, conductivity, and shock. While I believe that the reading is easy I think the setup of the charts and sample problems could use some work. The chapter text and the sample problems are hard to separate visually, while the charts could be larger and a bit more colorful.
1 of 1 people found the following review helpful.
Chapter 2 Review
By A Customer
Chapter 2 does a good job of describing the fundamentals of atomic bonding. The chapter starts out by reviewing the basic structure of the atom being the nucleus and the electrons. The nucleus is the center of the atom that is made up of protons and neutrons while the electrons are contained in the surrounding "shells" or orbitals. Throughout the beginning they explain the differences between the two types of bonding that can occur between atoms, the preliminary and the secondary bonding. They include the ionic, covalent, metallic, and the Van der Waals bonds. There are a few ideas that are mentioned for a reminder such as the mass of the proton and neutron, electron and Avagadro's number, which represents the number of protons necessary to provide a mass of 1 gram. There is an explanation of the orbital system and hybridization and a brief description of the different bonds mentioned in the preliminary and secondary bonding. Not only does the author describe the basics of the bond it does a good job of determining the origin of the bond, such as the ionic bond being the result of the Coulombic attraction. As a result of the easily understood explanations, they do supply brief definitions of the bond length, repulsive force, bonding force and bonding energy. Another topic that is touched on is the idea of the coordination number (CN) which depends on the ion properties. Following the CN, a definition of the different properties of the bonds and electrons and bond angles is thoroughly explained. Another thorough explanation is provided for the "Van der Waals" bonding, which is the attraction of opposite charges while there is no actual electron exchange. There are two types being permanent and temporary. I would recommend this book for a thorough explanation of the atomic structure.
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