9781577666912-1577666917-Fundamentals of Vibrations

Fundamentals of Vibrations

ISBN-13: 9781577666912
ISBN-10: 1577666917
Edition: 1
Author: Leonard Meirovitch
Publication date: 2010
Publisher: Waveland Pr Inc.
Format: Hardcover 806 pages
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Book details

ISBN-13: 9781577666912
ISBN-10: 1577666917
Edition: 1
Author: Leonard Meirovitch
Publication date: 2010
Publisher: Waveland Pr Inc.
Format: Hardcover 806 pages

Summary

Fundamentals of Vibrations (ISBN-13: 9781577666912 and ISBN-10: 1577666917), written by authors Leonard Meirovitch, was published by Waveland Pr Inc. in 2010. With an overall rating of 3.5 stars, it's a notable title among other Mechanical (Engineering) books. You can easily purchase or rent Fundamentals of Vibrations (Hardcover) from BooksRun, along with many other new and used Mechanical books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $17.02.

Description

Fundamentals of Vibrations provides a comprehensive coverage of mechanical vibrations theory and applications. Suitable as a textbook for courses ranging from introductory to graduate level, it can also serve as a reference for practicing engineers. Written by a leading authority in the field, this volume features a clear and precise presentation of the material and is supported by an abundance of physical explanations, many worked-out examples, and numerous homework problems.

The modern approach to vibrations emphasizes analytical and computational solutions that are enhanced by the use of MATLAB. The text covers single-degree-of-freedom systems, two-degree-of-freedom systems, elements of analytical dynamics, multi-degree-of-freedom systems, exact methods for distributed-parameter systems, approximate methods for distributed-parameter systems, including the finite element method, nonlinear oscillations, and random vibrations. Three appendices provide pertinent material from Fourier series, Laplace transformation, and linear algebra.

TABLE OF CONTENTS:

1. Concepts from Vibrations 2. Response of Single-Degree-of-Freedom Systems to Initial Excitations 3. Response of Single-Degree-of-Freedom Systems to Harmonic and Periodic Excitations 4. Response of Single-Degree-of-Freedom Systems to Nonperiodic Excitations 5. Two-Degree-of-Freedom Systems 6. Elements of Analytical Dynamics 7. Multi-Degree-of-Freedom Systems 8. Distributed-Parameter Systems: Exact Solutions 9. Distributed-Parameter Systems: Approximate Methods 10. The Finite Element Method 11. Nonlinear Oscillations 12. Random Vibrations

Appendixes: Fourier Series / Laplace Transformation / Linear Algebra

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