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Principles of Vibration, by Benson H. Tongue
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In this second edition of Principles of Vibration, Benson H. Tongue takes a refreshingly informal approach to the understanding and analysis of vibration problems. His student-friendly style creates a sense of "one-on-one" communication to which students respond with enthusiasm, declaring that the text is enjoyable, informative, and even "good bedtime reading." The text material can be used in a first vibrations course and in advanced undergraduate/beginning graduate courses. Some familiarity with linear algebra, elementary deformable bodies, and beginning dynamics is assumed. Tongue provides a basic understanding of the principles of vibrations, presenting the core ideas and theories that define the field. Starting with classical material--single-degree-of-freedom systems--he branches out into modern topics, emphasizing multiple-degree-of-freedom systems. Principles of Vibration, Second Edition is an ideal text for senior undergraduates and graduate students in mechanical, civil, and aeronautical engineering departments.
Features
--Features a student-centric presentation that emphasizes the understanding of basic concepts
--Provides modal analysis and linear algebra tools to solve vibration problems
--Contains general solution techniques and specific approaches using MATLAB�
--Includes a wide array of problems from various disciplines
--Contains 126 completely new homework problems, 100 modified problems, and 13 new examples
--Contains a unique chapter on "Seat-of-the-Pants" engineering, giving novices the "tricks of the trade" that provide fast and accurate estimations of the real solution to a problem
- Sales Rank: #819226 in Books
- Published on: 2001-12-20
- Original language: English
- Number of items: 1
- Dimensions: 7.60" h x 1.30" w x 9.40" l, 2.44 pounds
- Binding: Hardcover
- 528 pages
About the Author
Sheri D. Sheppard, Ph.D., is the Carnegie Foundation for the Advancement of Teaching Senior Scholar principally responsible for the Preparations for the Professions Program (PPP) engineering study. She is an Associate Professor of Mechanical Engineering at Stanford University. She received her Ph.D. from the University of Michigan in 1985. Besides teaching both undergraduate and graduate design-related classes at Stanford University, she conducts research on weld fatigue and impact failures, fracture mechanics, and applied finite element analysis.
Dr. Sheppard was recently named co-principal investigator on a NSF grant to form the Center for the Advancement of Engineering Education (CAEE), along with faculty at the University of Washington, Colorado School of Mines, and Howard University. She was co-principal investigator with Professor Larry Leifer on a multi-university NSF grant that was critically looking at engineering undergraduate curriculum (Synthesis). In 1999, Sheri was named a fellow of the American Society of Mechanical Engineering(ASME) and the American Association for the Advancement of Science (AAAS). Recently Sheri was awarded the 20 04 ASEE Chester F. Carlson Award in recognition of distinguished accomplishments in engineering education. Before coming to Stanford University, she held several positions in the automotive industry, including senior research engineering at Ford Motor Company's Scientific Research Lab. She also worked as a design consultant, providing companies with structural analysis expertise.
Benson H. Tongue, Ph.D. is a Professor of Mechanical Engineering at University of California-Berkeley. He received his Ph.D. from Princeton University in1988, and Currently teaches graduate and undergraduate courses in dynamics vibrations, and control theory. His research concentrates on the modeling and analysis of nonlinear dynamical systems and the control of both structural and acoustic systems. This work involves experimental, theoretical, and numerical analysis and has been directed toward helicopters, computer disk drives, robotic manipulators, and general structural systems. Most recently, he has been involved in a multidisciplinary stud of automated highways and has directed research aimed at understanding the nonlinear behavior of vehicles traveling in platoons and in devising controllers that optimize the platoon's behavior in the face of non-nominal operating conditions. His most recent research has involved in the active control of loudspeakers and biomechanical analysis of human fall dynamics.
Dr. Tongue is the author of Principles of Vibration, a senior/first-year graduate-level textbook. He has served as Associate Technical Editor of the ASME Journal of Vibration and Acoustics and is currently a member of the ASME Committee on Dynamics of Structures and Systems. He is the recipient of the NSF Presidential Young Investigator Award, the Sigma Xi Junior Faculty award, and the Pi Tau Sigma Excellence in Teaching award. He serves as a reviewer for numerous journals and funding agencies and is the author of more than sixty publications.
Most helpful customer reviews
2 of 2 people found the following review helpful.
Excellent Text
By Justin Reina
I am concluding a course in vibrations (UofWashington) and wanted to take a moment to recognize the author for the excellent text he has crafted. I have found many times through the quarter that simply sitting down and diving through its chapters taught me more than my professor ever could have.
Specifically:
-Excellent examples
-Excellent derivations
-Unique and effective approach to emphasizing fundamental points
But mainly this text excels because it never forgets the main point - to help newcomers understand the topic of vibrations. Highly recommended, even if you don't specifically need a text on vibrations. I think everyone could use a little more of chapters three,four,six and eight (if you're curious, buy the book!) :)
Just my two cents.
-Justin
0 of 0 people found the following review helpful.
Good introductory text
By I. Gurin
I used this book in Prof. Tongue's own vibrations class some years ago, and occasionally refer to it today. It reflects his unique lecture style: mathematically thorough and rigorous, yet engaging, patient (no student left behind), and often witty. The math can be difficult for engineers, but Tongue walks you through it so that it's clear. If you have to teach yourself vibrations and don't have the benefit of a teacher, this would be a good book.
This approach does have drawbacks. The expositions are lengthy. Key derivations can run for many pages, as Tongue explains all of the nuances, implications and pitfalls. This makes it difficult to use as a reference, although there is an appendix that just lists the key formulas. Systems with multiple degrees of freedom are not covered in as much detail as those with one, and even then there's a focus specifically on systems with two. If you're already passingly familiar with the subject, you're best served by a classic text such as Meirovitch.
2 of 3 people found the following review helpful.
Best vibrations book ever
By Brazuca
Ok, its been 10 years since I completed my undergrad, so I barely remember the equations of motion. Sudenly I see myself in this new job where dynamics is everything they do. I got myself all kinds of books to help me refresh my memory but they were all over my head. This book however is down to earth. It is easy to read, almost if the professor was right there explaining everything to you in a very informal manner. I loved it! That is what I needed. I recomend to anyone new in vibrations or trying to get a good foundation.
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