Vibration analysis and structural dynamics for civil engineers : essentials and group-theoretic formulations / by Alphose Zingoni.

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Bibliographic Details
Online Access: Full Text (via Taylor & Francis)
Main Author: Zingoni, Alphose (Author)
Corporate Author: Taylor & Francis
Format: eBook
Language:English
Published: Boca Raton, FL : CRC Press, an imprint of Taylor and Francis, 2014.
Edition:First edition.
Subjects:

MARC

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245 1 0 |a Vibration analysis and structural dynamics for civil engineers :  |b essentials and group-theoretic formulations /  |c by Alphose Zingoni. 
250 |a First edition. 
264 1 |a Boca Raton, FL :  |b CRC Press, an imprint of Taylor and Francis,  |c 2014. 
300 |a 1 online resource (276 pages) :  |b 90 illustrations. 
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505 0 |a Chapter 1 Introduction -- chapter 2 Single degree-of-freedom systems -- chapter 3 Systems with more than one degree of freedom -- chapter 4 Continuous systems -- chapter 5 Finite-element vibration analysis -- chapter 6 Basic concepts of symmetry groups and representation theory -- chapter 7 Rectilinear models -- chapter 8 Plane structural grids -- chapter 9 High-tension cable nets -- chapter 10 Finite-difference formulations for plates -- chapter 11 Finite-element formulations for symmetric elements. 
520 3 |a Appeals to the Student and the Seasoned Professional While the analysis of a civil-engineering structure typically seeks to quantify static effects (stresses and strains), there are some aspects that require considerations of vibration and dynamic behavior. Vibration Analysis and Structural Dynamics for Civil Engineers: Essentials and Group-Theoretic Formulations is relevant to instances that involve significant time-varying effects, including impact and sudden movement. It explains the basic theory to undergraduate and graduate students taking courses on vibration and dynamics, and also presents an original approach for the vibration analysis of symmetric systems, for both researchers and practicing engineers. Divided into two parts, it first covers the fundamentals of the vibration of engineering systems, and later addresses how symmetry affects vibration behavior. 
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