
Introduction to Finite Element Vibration Analysis
$475.59
- Hardcover
516 pages
- Release Date
23 August 2010
Summary
Unveiling Finite Element Vibration Analysis: A Practical Guide
This book serves as an introduction to the mathematical foundations of finite element analysis, specifically focusing on its application to vibrating systems. Finite element analysis is a crucial technique for modeling the response of structures subjected to dynamic loads.
While no prior knowledge of finite element methods is assumed, individuals with existing knowledge will also find this book valuable. It is a …
Book Details
ISBN-13: | 9780521191609 |
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ISBN-10: | 0521191602 |
Author: | Maurice Petyt |
Publisher: | Cambridge University Press |
Imprint: | Cambridge University Press |
Format: | Hardcover |
Number of Pages: | 516 |
Edition: | 2nd |
Release Date: | 23 August 2010 |
Weight: | 1.10kg |
Dimensions: | 260mm x 186mm x 28mm |
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Critics Review
“The contents of this work are very well organized … a very useful theoretical reference. …Recommended.” CHOICE
“The contents of this work are very well organized, and Petyt (Univ. of Southhamption, UK) gradually introduces important concepts, making it a very useful theoretical reference.” X. Le, Wentworth Institute of Technology“The contents of this work are very well organized … a very useful theoretical reference. …Recommended.” CHOICE
About The Author
Maurice Petyt
Maurice Petyt is an Emeritus Professor of Structural Dynamics, Institute of Sound and Vibration Research, University of Southampton. He has also held appointments as a Research Professor at George Washington University and Visiting Professor at the University d’Aix-Marseille II, France, and the National University of Singapore. He is a Charted Mathematician, a Fellow of the Institute of Mathematics and its Applications, a Fellow of the International Institute of Acoustics and Vibration, and a Fellow of the Institute of Acoustics. Formerly European Editor and Editor-in-Chief, he is now Editor Emeritus of the Journal of Sound and Vibration.
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