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Fundamentals of Noise and Vibration Analysis for Engineers
 
 
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Fundamentals of Noise and Vibration Analysis for Engineers (Paperback)

by M. P. Norton (Author), D. G. Karczub (Author) "Noise and vibration are often treated separately in the study of dynamics, and it is sometimes forgotten that the two are inter-related - i.e. they..." (more)
Key Phrases: higher order acoustic modes, dynamic bending strain, acoustic radiation damping, John Wiley, Ffowcs Williams, Academic Press (more...)
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Editorial Reviews
Review
"This is a fine text, comprehensive in content, with depth enough for post graduate students, consultants and researchers alike. Few texts deal with both noise and vibration in any detail; this one is accordingly welcome." C.W. Stammers, Machine Systems Group, Department of Mechanical Engineering, University of Bath

Product Description
Michael Norton's classic text has been extensively updated to include the latest developments in the field. The book's analysis of noise and vibration emphasizes wave-mode duality and interactions between sound waves and solid structures. Primarily a textbook for senior level undergraduate and graduate courses, the volume is also a valuable reference for researchers and practicing engineers. First Edition Hb (1990): 0-521-34148-5 First Edition Pb (1990): 0-521-34941-9

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Product Details

Inside This Book (learn more)
First Sentence:
Noise and vibration are often treated separately in the study of dynamics, and it is sometimes forgotten that the two are inter-related - i.e. they simply relate to the transfer of molecular motional energy in different media (generally fluids and solids respectively). Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
higher order acoustic modes, dynamic bending strain, acoustic radiation damping, wavenumber coincidence, wall pressure field, propagating wave component, bearing vibration signal, joint acceptance function, internal loss factors, acoustic radiation load, normalised random error, pipe wall vibration, vibration control procedures, coupling loss factors, circumferential excitation, corresponding acoustic wavenumber, radiated noise energy, signal magnitude analysis, structural vibration levels, travelling wave concepts, spherical sound source, wall pressure fluctuations, structural loss factor, bending wave velocity, corresponding acoustic wavelength
Key Phrases - Capitalized Phrases (CAPs): (learn more)
John Wiley, Ffowcs Williams, Academic Press, Ellis Horwood, International Congress, Proceedings Inter-Noise, Journal of Vibration, Proceedings of the Royal Society, University of Adelaide, Journal of Fluid Mechanics, Marcel Dekker, Spectra of A-weighted, Applied Acoustics, Department of Mechanical Engineering, Industrial Press, University of Western Australia
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