Engineering Vibration 4th Edition by Daniel Inman – Ebook PDF Instant Download/Delivery. 0132871696, 978-0132871693
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Product details:
ISBN 10: 0132871696
ISBN 13: 978-0132871693
Author: Daniel Inman
Intended for use in one/two-semester introductory courses in vibration for undergraduates in Mechanical Engineering, Civil Engineering, Aerospace Engineering and Mechanics. This text is also suitable for readers with an interest in Mechanical Engineering, Civil Engineering, Aerospace Engineering and Mechanics.
Serving as both a text and reference manual, Engineering Vibration, 4e, connects traditional design-oriented topics, the introduction of modal analysis, and the use of MATLAB, Mathcad, or Mathematica. The author provides an unequaled combination of the study of conventional vibration with the use of vibration design, computation, analysis and testing in various engineering applications.
Engineering Vibration 4th Table of contents:
1. Introduction
1.1 Vibration and Its Importance
1.2 Brief History of Vibration Analysis
1.3 Elements of a Vibratory System
1.4 Simple Harmonic Motion
1.5 Organization of the Text
2. Single-Degree-of-Freedom Systems
2.1 Free Vibration Without Damping
2.2 Free Vibration with Damping
2.3 Forced Vibration Without Damping
2.4 Forced Vibration with Damping
2.5 Rotating Unbalance
2.6 Base Excitation
2.7 Transmissibility
2.8 Vibration Isolation
- Problems
3. Multi-Degree-of-Freedom Systems
3.1 Introduction to Multi-Degree-of-Freedom Systems
3.2 Equations of Motion
3.3 Natural Frequencies and Mode Shapes
3.4 Forced Vibration
3.5 Modal Analysis
3.6 Applications to Engineering Systems
- Problems
4. Continuous Systems
4.1 Vibration of Strings
4.2 Longitudinal Vibration of Bars
4.3 Torsional Vibration of Shafts
4.4 Bending Vibration of Beams
4.5 Approximate Methods for Continuous Systems
- Problems
5. Computational Methods in Vibration Analysis
5.1 Numerical Integration of Equations of Motion
5.2 Finite Element Analysis for Vibrations
5.3 MATLAB Applications in Vibration Analysis
- Problems
6. Experimental Methods in Vibration Analysis
6.1 Measurement of Vibration
6.2 Experimental Modal Analysis
6.3 Signal Processing in Vibration Analysis
6.4 Applications of Experimental Methods
- Problems
7. Nonlinear Vibration
7.1 Nonlinear Systems and Their Characteristics
7.2 Phase Plane Analysis
7.3 Perturbation Methods
7.4 Chaos in Vibratory Systems
- Problems
8. Vibration Control
8.1 Introduction to Vibration Control
8.2 Passive Vibration Control
8.3 Active Vibration Control
8.4 Semi-Active and Hybrid Vibration Control
8.5 Applications in Engineering Systems
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