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The Foundations of Acoustics
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Author(s):
Eugen Skudrzyk
Publication date
(Print):
1971
Publisher:
Springer Vienna
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Book
ISBN (Print):
978-3-7091-8257-4
ISBN (Electronic):
978-3-7091-8255-0
Publication date (Print):
1971
DOI:
10.1007/978-3-7091-8255-0
SO-VID:
782afd17-00b7-4e2d-965c-70b1f3536d98
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http://www.springer.com/tdm
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Book chapters
pp. 1
Historical Introduction
pp. 6
Equations and Units
pp. 17
Complex Notation and Symbolic Methods
pp. 33
Analytic Functions: Their Integration and the Delta Function
pp. 78
Fourier Analysis
pp. 95
Advanced Fourier Analysis
pp. 123
The Laplace Transform
pp. 131
Integral Transforms and the Fourier Bessel Series
pp. 137
Correlation Analysis
pp. 149
Wiener’s Generalized Harmonic Analysis
pp. 152
Transmission Factor, Filters, and Transients (Küpfmüller’s Theory)
pp. 201
Probability Theory, Statistics, and Noise
pp. 236
Signals and Signal Processing
pp. 270
Sound
pp. 284
The One-Dimensional Wave Equation and Its Solutions
pp. 295
Reflection and Transmission of Plane Waves at Normal Incidence
pp. 313
Plane Waves in Three Dimensions
pp. 326
Sound Propagation in Ideal Channels and Tubes
pp. 344
Spherical Waves, Sources, and Multipoles
pp. 378
Solution of the Wave Equation in General Spherical Coordinates
pp. 392
Problems of Practical Interest in General Spherical Coordinates
pp. 423
The Wave Equation in Cylindrical Coordinates and Its Applications
pp. 455
The Wave Equation in Spheroidal Coordinates and Its Solutions
pp. 489
The Helmholtz Huygens Integral
pp. 512
Huygens Principle and the Rubinowicz-Kirchhoff Theory of Diffraction
pp. 557
The Sommerfeld Theory of Diffraction
pp. 593
Sound Radiation of Arrays and Membranes
pp. 641
The Green’s Functions of the Helmholtz Equation and Their Applications
pp. 663
Self and Mutual Radiation Impedance
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