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Download Acoustics. Basic Physics, Theory, and Methods by Paul Filippi,Aime Bergassoli,Dominique Habault, et PDF

By Paul Filippi,Aime Bergassoli,Dominique Habault, et al.Elsevier|Elsevier Science||Academic PressAdult NonfictionScience, TechnologyLanguage(s): EnglishOn sale date: 31.05.2011Street date: 23.09.1998

ISBN-10: 0080498558

ISBN-13: 9780080498553

The e-book is dedicated to the very foundation of acoustics and vibro-acoustics. The physics of the phenomena, the analytical tools and the trendy numerical ideas are provided in a concise shape. Many examples illustrate the basic difficulties and predictions (analytic or numerical) and are usually in comparison to experiments. a few emphasis is wear the mathematical instruments required through rigorous conception and trustworthy prediction methods.

Key Features

  • a sequence of sensible difficulties, which replicate the content material of every chapter
  • reference to the main treatises and basic fresh papers
  • current computing strategies, utilized in challenge fixing
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    Extra info for Acoustics. Basic Physics, Theory, and Methods

    Sample text

    If they do so, I am sure that they will be duly rewarded. Preface Dominique Habault; Paul Filippi; Jean-Pierre Lefebvre; Aimé Bergassoli, Marseille, May 1998 These lecture notes were first written in French, while the authors were teaching Acoustics at the University of Aix-Marseille, France. D. thesis. The reason for writing this book was, at the time we began, the lack of textbooks. Most of the books were either too specialized, and thus almost incomprehensible for students, or too exhaustive.

    Its contents are what is important. No other English-language book on acoustics contains as much concise information, both physically and mathematically rigorous, on the basic physical and theoretical concepts of acoustics and the methods of obtaining solutions applicable to practical problems of the mathematical problems of acoustics. Although acoustics is presented in the book as a collection of mathematical problems and how to solve them, the physical bases of these problems are initially spelled out in generality in the first chapter, in the context of continuum mechanics (which is not done in any other books on acoustics).

    In wave propagation, for example, the unit length that is well adapted to the description of the phenomenon is the wavelength. Then there are ‘low frequency’ and ‘high frequency’ methods, and all dimensions must be compared with the wavelength. It is always essential to choose ‘reasonable’ approximations and the methods adapted to the problem. It is obviously a nonsense to develop or run a big routine in order to compute results which can be obtained simply through analytical methods. The book tries to give a clear overview on these aspects.

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