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Introduction to Acoustics

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of elastic solids, Trans. Camb. Philos. Soc. 8, 75–102<br />

(1845)<br />

3.13 L.D. Landau, E.M. Lifshitz, L.P. Pitaevskii: Statistical<br />

Physics, Part 1 (Pergamon, New York 1980)<br />

3.14 A.D. Pierce: Aeroacoustic fluid dynamic equations<br />

and their energy corollary with O2 and N2 relaxation<br />

effects included, J. Sound Vibr. 58, 189–200 (1978)<br />

3.15 J. Fourier: Analytical Theory of Heat (Dover, New York<br />

1955), The 1st ed. was published in 1822<br />

3.16 J. Hilsenrath: Tables of Thermodynamic and Transport<br />

Properties of Air (Pergamon, Oxford 1960)<br />

3.17 W. Sutherland: The viscosity of gases and molecular<br />

force, Phil. Mag. 5(36), 507–531 (1893)<br />

3.18 M. Greenspan: Rotational relaxation in nitrogen,<br />

oxygen, and air, J. Acoust. Soc. Am. 31, 155–160<br />

(1959)<br />

3.19 R.A. Horne: Marine Chemistry (Wiley-Interscience,<br />

New York 1969)<br />

3.20 J.M.M. Pinker<strong>to</strong>n: A pulse method for the measurement<br />

of ultrasonic absorption in liquids: Results for<br />

water, Nature 160, 128–129 (1947)<br />

3.21 W.D. Wilson: Speed of sound in distilled water as<br />

a function of temperature and pressure, J. Acoust.<br />

Soc. Am. 31, 1067–1072 (1959)<br />

3.22 W.D. Wilson: Speed of sound in sea water as<br />

a function of temperature, pressure, and salinity,<br />

J. Acoust. Soc. Am. 32, 641–644 (1960)<br />

3.23 A.B. Wood: A Textbook of Sound, 2nd edn. (Macmillan,<br />

New York 1941)<br />

3.24 A. Mallock: The damping of sound by frothy liquids,<br />

Proc. Roy. Soc. Lond. A 84, 391–395 (1910)<br />

3.25 S.H. Crandall, N.C. Dahl, T.J. Lardner: An <strong>Introduction</strong><br />

<strong>to</strong> the Mechanics of Solids (McGraw-Hill, New York<br />

1978)<br />

3.26 L.D. Landau, E.M. Lifshitz: Theory of Elasticity (Pergamon,<br />

New York 1970)<br />

3.27 A.E.H. Love: The Mathematical Theory of Elasticity<br />

(Dover, New York 1944)<br />

3.28 J.D. Achenbach: Wave Propagation in Elastic Solids<br />

(North-Holland, Amsterdam 1975)<br />

3.29 M.J.P. Musgrave: Crystal <strong>Acoustics</strong> (Acoust. Soc. Am.,<br />

Melville 2003)<br />

3.30 A.D. Pierce: <strong>Acoustics</strong>: An <strong>Introduction</strong> <strong>to</strong> Its Physical<br />

Principles and Applications (Acoust. Soc. Am.,<br />

Melville 1989)<br />

3.31 P.G. Bergmann: The wave equation in a medium<br />

with a variable index of refraction, J. Acoust. Soc.<br />

Am. 17, 329–333 (1946)<br />

3.32 L. Cremer: Über die akustische Grenzschicht von<br />

starren Wänden, Arch. Elekt. Uebertrag. 2, 136–139<br />

(1948), in German<br />

3.33 G.R. Kirchhoff: Über den Einfluß der Wärmeleitung<br />

in einem Gase auf die Schallbewegung, Ann. Phys.<br />

Chem. Ser. 5 134, 177–193 (1878)<br />

3.34 L.S.G. Kovasznay: Turbulence in supersonic flow, J.<br />

Aeronaut. Sci. 20, 657–674 (1953)<br />

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3.35 T.Y. Wu: Small perturbations in the unsteady flow of<br />

a compressible, viscous, and heat-conducting fluid,<br />

J. Math. Phys. 35, 13–27 (1956)<br />

3.36 R. Courant: Differential and Integral Calculus, Vol.1,<br />

2 (Wiley-Interscience, New York 1937)<br />

3.37 H. Lamb: Hydrodynamics (Dover, New York 1945)<br />

3.38 A.H. Shapiro: Shape and Flow: The Fluid Dynamics<br />

of Drag (Doubleday, Garden City 1961) pp. 59–63<br />

3.39 R.F. Lambert: Wall viscosity and heat conduction<br />

losses in rigid tubes, J. Acoust. Soc. Am. 23, 480–481<br />

(1951)<br />

3.40 S.H. Crandall, D.C. Karnopp, E.F. Kurtz Jr.,<br />

D.C. Pridmore-Brown: Dynamics of Mechanical and<br />

Electromechanical Systems (McGraw-Hill, New York<br />

1968)<br />

3.41 A.D. Pierce: Variational principles in acoustic radiation<br />

and scattering. In: Physical <strong>Acoustics</strong>, Vol. 22,<br />

ed. by A.D. Pierce (Academic, San Diego 1993)<br />

pp. 205–217<br />

3.42 M.A. Biot: Theory of propagation of elastic waves<br />

in a fluid saturated porous solid. I. Low frequency<br />

range, J. Acoust. Soc. Am. 28, 168–178 (1956)<br />

3.43 R.D. S<strong>to</strong>ll: Sediment <strong>Acoustics</strong> (Springer, Berlin, Heidelberg<br />

1989)<br />

3.44 J. Bear: Dynamics of Fluids in Porous Media (Dover,<br />

New York 1988)<br />

3.45 H. Fletcher: Audi<strong>to</strong>ry patterns, Rev. Mod. Phys. 12,<br />

47–65 (1940)<br />

3.46 C.J. Bouwkamp: A contribution <strong>to</strong> the theory of<br />

acoustic radiation, Phillips Res. Rep. 1, 251–277 (1946)<br />

3.47 H. Helmholtz: Theorie der Luftschwingunden in<br />

Röhren mit offenen Enden, J. Reine Angew. Math.<br />

57, 1–72 (1860)<br />

3.48 R.T. Beyer, S.V. Letcher: Physical Ultrasonics (Academic,<br />

New York 1969)<br />

3.49 J.J. Markham, R.T. Beyer, R.B. Lindsay: Absorption of<br />

sound in fluids, Rev. Mod. Phys. 23, 353–411 (1951)<br />

3.50 R.B. Lindsay: Physical <strong>Acoustics</strong> (Dowden, Hutchinson,<br />

Ross, Stroudsburg 1974)<br />

3.51 J. Meixner: Absorption and dispersion of sound in<br />

gases with chemically reacting and excitable components,<br />

Ann. Phys. 5(43), 470–487 (1943)<br />

3.52 J. Meixner: Allgemeine Theorie der Schallabsorption<br />

in Gasen un Flüssigkeiten ujnter Berücksichtigung<br />

der Transporterscheinungen, Acustica 2, 101–109<br />

(1952)<br />

3.53 J. Meixner: Flows of fluid media with internal transformations<br />

and bulk viscosity, Z. Phys. 131, 456–469<br />

(1952)<br />

3.54 K.F. Herzfeld, F.O. Rice: Dispersion and absorption of<br />

high frequency sound waves, Phys. Rev. 31, 691–695<br />

(1928)<br />

3.55 L. Hall: The origin of ultrasonic absorption in water,<br />

Phys. Rev. 73, 775–781 (1948)<br />

3.56 J.S. Toll: Causality and the dispersion relations: Logical<br />

foundations, Phys. Rev. 104, 1760–1770 (1956)<br />

Part A 3

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