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294 Part B Physical and Nonlinear <strong>Acoustics</strong><br />

Part B 8<br />

8.7 N.S. Bakhvalov, Y.M. Zhileikin, E.A. Zabolotskaya:<br />

Nonlinear Theory of Sound Beams (American Institute<br />

of Physics, Melville 1987)<br />

8.8 B.K. Novikov, O.V. Rudenko, V.I. Timoshenko: Nonlinear<br />

Underwater <strong>Acoustics</strong> (American Institute of<br />

Physics, New York 1987)<br />

8.9 O.V. Rudenko, S.I. Soluyan: Theoretical Foundations<br />

of Nonlinear <strong>Acoustics</strong> (Consultants Bureau, London<br />

1977)<br />

8.10 G.B. Whitham: Linear and Nonlinear Waves (Wiley,<br />

London 1974)<br />

8.11 L.D. Rozenberg (Ed.): High-Intensity Ultrasonic<br />

Fields (Plenum, New York 1971)<br />

8.12 M.F. Hamil<strong>to</strong>n, D.T. Blacks<strong>to</strong>ck (Eds.): Frontiers of<br />

Nonlinear <strong>Acoustics</strong> (Elsevier, London 1990)<br />

8.13 H. Hobaek (Ed.): Advances in Nonlinear <strong>Acoustics</strong><br />

(World Scientific, Singapore 1993)<br />

8.14 R.J. Wei (Ed.): Nonlinear <strong>Acoustics</strong> in Perspective<br />

(Nanjing Univ. Press, Nanjing 1996)<br />

8.15 W. Lauterborn, T. Kurz (Eds.): Nonlinear <strong>Acoustics</strong> at<br />

the Turn of the Millennium (American Institute of<br />

Physics, Melville 2000)<br />

8.16 O.V. Rudenko, O.A. Sapozhnikov (Eds.): Nonlinear<br />

<strong>Acoustics</strong> at the Beginning of the 21st Century (Faculty<br />

of Physics, Moscow State University, Moscow<br />

2002)<br />

8.17 S. Makarov, M. Ochmann: Nonlinear and thermoviscous<br />

phenomena in acoustics, Part I, Acustica 82,<br />

579–606 (1996)<br />

8.18 S. Makarov, M. Ochmann: Nonlinear and thermoviscous<br />

phenomena in acoustics, Part II, Acustica 83,<br />

197–222 (1997)<br />

8.19 S. Makarov, M. Ochmann: Nonlinear and thermoviscous<br />

phenomena in acoustics, Part III, Acustica 83,<br />

827–864 (1997)<br />

8.20 C.E. Brennen: Cavitation and Bubble Dynamics (Oxford<br />

Univ. Press, Oxford 1995)<br />

8.21 T.G. Leigh<strong>to</strong>n: The Acoustic Bubble (Academic, London<br />

1994)<br />

8.22 J.R. Blake, J.M. Boul<strong>to</strong>n-S<strong>to</strong>ne, N.H. Thomas (Eds.):<br />

Bubble Dynamics and Interface Phenomena (Kluwer,<br />

Dordrecht 1994)<br />

8.23 F.R. Young: Cavitation (McGraw-Hill, London 1989)<br />

8.24 L. van Wijngaarden (Ed.): Mechanics and Physics of<br />

Bubbles in Liquids (Martinus Nijhoff, The Hague 1982)<br />

8.25 W. Lauterborn (Ed.): Cavitation and Inhomogeneities<br />

in Underwater <strong>Acoustics</strong> (Springer, Berlin,<br />

Heidelberg 1980)<br />

8.26 E.A. Neppiras: Acoustic cavitation, Phys. Rep. 61,<br />

159–251 (1980)<br />

8.27 H.G. Flynn: Physics of acoustic cavitation. In: Physical<br />

<strong>Acoustics</strong>, ed. by W.P. Mason (Academic, New<br />

York 1964) pp. 57–172<br />

8.28 F.R. Young: Sonoluminescence (CRC, Boca Ra<strong>to</strong>n<br />

2005)<br />

8.29 T.J. Mason, J.P. Lorimer: Applied Sonochemistry<br />

(Wiley-VCH, Weinheim 2002)<br />

8.30 K.S. Suslick (Ed.): Ultrasound: Its Chemical, Physical<br />

and Biological Effects (VCH, New York 1988)<br />

8.31 W. Lauterborn: Acoustic chaos. In: Encyclopedia of<br />

Physical Science and Technology, 3rd edn., ed. by<br />

R.A. Meyers (Academic, San Diego 2002) pp. 117–<br />

127<br />

8.32 W. Lauterborn, U. Parlitz: Methods of chaos physics<br />

and their application <strong>to</strong> acoustics, J. Acoust. Soc.<br />

Am. 84, 1975–1993 (1988)<br />

8.33 F.E. Fox, W.A. Wallace: Absorption of finite amplitude<br />

sound waves, J. Acoust. Soc. Am. 26, 994–1006<br />

(1954)<br />

8.34 R.T. Beyer: Parameter of nonlinearity in fluids, J.<br />

Acoust. Soc. Am. 32, 719–721(1960)<br />

8.35 A.B. Coppens, R.T. Beyer, M.B. Seiden, J. Donohue,<br />

F. Guepin, R.H. Hodson, C. Townsend: Parameter<br />

of nonlinearity. II, J. Acoust. Soc. Am. 38, 797–804<br />

(1965)<br />

8.36 R.T. Beyer: Nonlinear <strong>Acoustics</strong> (Naval Ship Systems<br />

Command, Washing<strong>to</strong>n 1974), Table 3-1<br />

8.37 E.C. Everbach: Tissue Composition Determination via<br />

Measurement of the Acoustic Nonlinearity Parameter<br />

B/A, Ph.D. Dissertation (Yale Univ., New Haven 1989)<br />

p. 66<br />

8.38 Z. Zhu, M.S. Roos, W.N. Cobb, K. Jensen: Determination<br />

of the acoustic nonlinearity parameter B/A<br />

from phase measurements, J. Acoust. Soc. Am. 74,<br />

1518–1521 (1983)<br />

8.39 X. Gong, Z. Zhu, T. Shi, J. Huang: Determination<br />

of the acoustic nonlinearity parameter in biological<br />

media using FAIS and ITD methods, J. Acoust.<br />

Soc. Am. 86, 1–5 (1989)<br />

8.40 W.K. Law, L.A. Frizell, F. Dunn: Determination of<br />

the nonlinearity parameter B/A of biological media,<br />

Ultrasound Med. Biol. 11, 307–318 (1985)<br />

8.41 J. Zhang, F. Dunn: A small volume thermodynamic<br />

system for B/A measurement, J. Acoust. Soc. Am. 89,<br />

73–79 (1991)<br />

8.42 F. Plantier, J.L. Daridon, B. Lagourette: Measurement<br />

of the B/A nonlinearity parameter under high pressure:<br />

Application <strong>to</strong> water, J. Acoust. Soc. Am. 111,<br />

707–715 (2002)<br />

8.43 E.C. Everbach: Parameters of nonlinearity of acoustic<br />

media. In: Encyclopedia of <strong>Acoustics</strong>, ed.<br />

by M.J. Crocker (Wiley, New York 1997) pp. 219–<br />

226<br />

8.44 I. Rudnick: On the attenuation of finite amplitude<br />

waves in a liquid, J. Acoust. Soc. Am. 30, 564–567<br />

(1958)<br />

8.45 J. Banchet, J.D.N. Cheeke: Measurements of the<br />

acoustic nonlinearity parameter B/A in solvents: Dependence<br />

on chain length and sound velocity, J.<br />

Acoust. Soc. Am. 108, 2754–2758 (2000)<br />

8.46 A.B. Coppens, R.T. Beyer, M.B. Seiden, J. Donohue,<br />

F. Guepin, R.H. Hodson, C. Townsend: Parameter of<br />

nonlinearity in fluids II, J. Acoust. Soc. Am. 38, 797–<br />

804 (1965)

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