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Concepts and Applications of Finite Element Analysis

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Book Hero Magic crafted this summary to help describe this book. While it's new and still learning, it may not be perfect - your feedback is welcome! Summary
Concepts and Applications of Finite Element Analysis by Cook, Malkus, Plesha, and Witt is a comprehensive textbook designed for both introductory and advanced courses in finite element analysis. The fourth edition offers up-to-date coverage and clear explanations of fundamental concepts and practical modelling procedures, making it a key resource for students in engineering and related disciplines.
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Format: Hardback
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Book Hero Magic created this recommendation. While it's new and still learning, it may not be perfect - your feedback is welcome! IS THIS YOUR NEXT READ?

This book is ideal for engineering students and professionals seeking a thorough understanding of finite element analysis techniques, whether at the beginner or advanced level.

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This book has been thoroughly revised and updated to reflect developments since the third edition, with an emphasis on structural mechanics. Coverage is up-to-date without making the treatment highly specialized and mathematically difficult. Basic theory is clearly explained to the reader, while advanced techniques are left to thousands of references available, which are cited in the text.

Book Hero Magic formatted this description to make it easier to read. While it's new and still learning, it may not be perfect - your feedback is welcome! Description

Authors Cook, Malkus, Plesha, and Witt have revised Concepts and Applications of Finite Element Analysis, a text suited for both introductory and more advanced courses in Finite Element Analysis.

The fourth edition of this market-leading text provides students with up-to-date coverage and clear explanations of finite element analysis concepts and modelling procedures.

Book Details

INFORMATION

ISBN: 9780471356059

Publisher: John Wiley & Sons Inc

Format: Hardback

Date Published: 31 October 2001

Country: United States

Imprint: John Wiley & Sons Inc

Edition: 4th edition

Audience: General / adult, Tertiary education, Professional and scholarly

DIMENSIONS

Spine width: 33.0mm

Width: 185.0mm

Height: 257.0mm

Weight: 1247g

Pages: 736

About the Author

Robert D. Cooke received his Ph.D. in Theoretical and Applied Mechancis from the University of Illinois in 1963. Since then he has been at the University of Wisconsin-Madison, where he is now a professor in the Department of Engineering Physics. His interests include stress analysis and finite element methods. In addition to the present book, he is author of Finite Element Modeling for Stress Analysis (Wiley, 1995) and Advanced Mechanics of Materials (2nd Edtion, Prentice Hall, 1999, with Warren C. Young).

David S. Malkus received his Ph.D. from Boston University in 1976. He spent two years at the National Bureau of Standards and seven years in the Mathematics Department of Illinois Institute of Technology. He is now Professor of Engineering Mechanics at the Univrersity of Wisconsin-Madison. His research interests concern application of the finite element method to problems of structural and continuum mechanics, in particular the flow of non-Newtonian fluids. He is a member of the Rheology Research Center (University of Wisconsin-Madison) and the Society of Rheology.

Michael E. Plesha received his B.S. from the University of Illinois at Chicago, and his M.S. and Ph.D. degrees from Northwestern University, the Ph.D. degree in 1983. He has been a faculty member in the Department of Engineering Physics at the University of Wisconsin-Madison since 1983 where he is Professor of Engineering Mechanics. His research areas include constitutive modeling and finite element analysis of contact-friction problems, transient finite element analysis, and discrete element methods.

Robert J. Witt received his Ph.D. in Nuclear Engineering from the Massachusetts Institute of Technology in 1987. He is now an associate professor in the Department of Engineering Physics at the University of Wisconsin-Madison. His research interests are in computational methods of fluid and solid mechanics, with particular application to nuclear systems.

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