Books on the topic 'Acoustic Bubbles'

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1

Phelps, A. D. Active and passive acoustic bubble sizing. Southampton, England: University of Southampton, Institute of Sound and Vibration Research, 1994.

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2

Phelps, A. D. Acoustic bubble sizing, using active and passive techniques to compare ambient and entrained populations. Southampton, England: University of Southampton, Institute of Sound and Vibration, 1994.

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3

Ramble, D. G. The use of multiple acoustic techniques to size tethered and rising bubbles. Southampton, U. K: University of Southampton, Institute of Sound and Vibration Research, 1995.

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4

Doinikov, Alexander A. Bubble and particle dynamics in acoustic fields: Modern trends and applications. Kerala, India: Research Signpost, 2005.

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5

McIntyre, Trevor A. Ultrasonic acoustic characteristics of air bubbles in the surf zone. Monterey, Calif: Naval Postgraduate School, 1995.

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6

Godin, O. A. (Oleg A.), 1959-, ed. Akustika neodnorodnykh sred: V dvukh tomakh. Moskva: Nauka, n.d.

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7

Yasui, Kyuichi. Acoustic Cavitation and Bubble Dynamics. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-68237-2.

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8

1943-, Buckingham M. J., and Potter John, eds. Sea surface sound '94: Proceedings of the III International Meeting on Natural Physical Processes Related to Sea Surface Sound, University of California, Lake Arrowhead, 7-11 March 1994. Singapore: World Scientific, 1995.

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9

R, Kerman B., and Conference on Natural Physical Sources of Underwater Sound (1990 : Cambridge, England), eds. Natural physical sources of underwater sound: Sea surface sound (2). Dordrecht: Kluwer Academic Publishers, 1993.

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10

Kerman, B. R. Natural physical sources of underwater sound: Sea surface sound (2). Dordrecht: Springer Science, 1993.

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11

McGlothin, Charles C. Ambient sound in the ocean induced by heavy precipitation and the subsequent predictability of rainfall rate. Monterey, California: Naval Postgraduate School, 1991.

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12

Yasui, Kyuichi. Acoustic Cavitation and Bubble Dynamics. Springer International Publishing AG, 2017.

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13

Unger, Bruce T. Optically stimulated sound from gas bubbles in water. 1987.

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14

Asaki, Thomas James. Shape oscillations of bubbles in water driven by modulated ultrasonic radiation pressure and applications to interfacial dynamics. 1995.

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15

Acoustic Properties of Toroidal Bubbles and Construction of a Large Apparatus. Storming Media, 2004.

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16

Potential uses of vacuum bubbles in noise and vibration control. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1989.

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17

Determmination of the accommodation coefficient using vapor/gas bubble dynamics in an acoustic field. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2001.

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18

K, Kedrinskiĭ V., ed. Akustika neodnorodnykh sred: Sbornik nauchnykh trudov. Novosibirsk: Rossiĭskai͡a︡ akademii͡a︡ nauk, Sibirskoe otd-nie, In-t gidrodinamiki im. M.A. Lavrentʹeva, 1992.

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19

Leighton, T. G. Acoustic Bubble. Elsevier Science & Technology Books, 1997.

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20

Leighton, T. Acoustic Bubble. Elsevier Science & Technology Books, 2012.

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21

Leighton, T. G. The Acoustic Bubble. Academic Press, 1997.

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22

The Acoustic Bubble. Academic Pr, 1994.

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23

The Acoustic Bubble. Elsevier, 1994. http://dx.doi.org/10.1016/b978-0-12-441920-9.x5001-9.

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24

Grieser, Franz, Kenji Okitsu, Pak-Kon Choi, Naoya Enomoto, and Hisashi Harada. Sonochemistry and the Acoustic Bubble. Elsevier Science & Technology Books, 2015.

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25

Sonochemistry and the Acoustic Bubble. Elsevier, 2015. http://dx.doi.org/10.1016/c2013-0-18886-1.

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26

Grieser, Franz, Kenji Okitsu, Pak-Kon Choi, Naoya Enomoto, and Hisashi Harada. Sonochemistry and the Acoustic Bubble. Elsevier, 2015.

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27

Hampton, Stephen Wallace. An acoustic bubble density measurement technique for surface ship waters. 1987.

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28

Erickson, Kristin. Performing Algorithms. Edited by Roger T. Dean and Alex McLean. Oxford University Press, 2018. http://dx.doi.org/10.1093/oxfordhb/9780190226992.013.32.

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Abstract:
The chapter considers algorithmic music as the ‘sonification’ of algorithms, a term coined by Carla Scaletti to describe the mapping of numerically represented relations in some domain to relations in an acoustic domain. The chapter looks at the range of ways this concept has been used by the author in composing her works. The chapter identifies isomorphic relationships between algorithms and collaboration, music, and performance, and extends the boundary of the computer to include systems of people and sound. The definition of music and performance is extended to include process, rules, machines, and execution. Examples discussed include performing a bubble sort, pandemic performances (using principles of complex adaptive systems), Mandelbrot music, and M.T.Brain/Telebrain, which send complex algorithmic instructions to multiple performers in real time.
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