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1

Zhou, Yu, A. D. Lucey, Yang Liu, and Lixi Huang, eds. Fluid-Structure-Sound Interactions and Control. Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-48868-3.

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2

Zhou, Yu, Yang Liu, Lixi Huang, and Dewey H. Hodges, eds. Fluid-Structure-Sound Interactions and Control. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-40371-2.

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3

Zhou, Yu, Motoaki Kimura, Guoyi Peng, A. D. Lucey, and Lixi Huang, eds. Fluid-Structure-Sound Interactions and Control. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-10-7542-1.

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4

Braza, Marianna, Yannick Hoarau, Yu Zhou, Anthony D. Lucey, Lixi Huang, and Georgios E. Stavroulakis, eds. Fluid-Structure-Sound Interactions and Control. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-4960-5.

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5

Advanced Computational Vibroacoustics Reducedorder Models And Uncertainty Quantification. Cambridge University Press, 2014.

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6

Zhou, Yu, Lixi Huang, A. D. Lucey, Motoaki Kimura, and Guoyi Peng. Fluid-Structure-Sound Interactions and Control: Proceedings of the 4th Symposium on Fluid-Structure-Sound Interactions and Control. Springer, 2018.

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7

Hodges, Dewey H., Yu Zhou, Yang Liu, and Lixi Huang. Fluid-Structure-Sound Interactions and Control: Proceedings of the 2nd Symposium on Fluid-Structure-Sound Interactions and Control. Springer, 2016.

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8

Zhou, Yu, Yang Liu, and Lixi Huang. Fluid-Structure-Sound Interactions and Control: Proceedings of the 2nd Symposium on Fluid-Structure-Sound Interactions and Control. Springer, 2013.

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9

Zhou, Yu, Yang Liu, Lixi Huang, and A. D. Lucey. Fluid-Structure-Sound Interactions and Control: Proceedings of the 3rd Symposium on Fluid-Structure-Sound Interactions and Control. Springer, 2019.

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10

Hodges, Dewey H., Yu Zhou, Yang Liu, and Lixi Huang. Fluid-Structure-Sound Interactions and Control: Proceedings of the 2nd Symposium on Fluid-Structure-Sound Interactions and Control. Springer, 2013.

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11

Zhou, Yu, Lixi Huang, A. D. Lucey, Motoaki Kimura, and Guoyi Peng. Fluid-Structure-Sound Interactions and Control: Proceedings of the 4th Symposium on Fluid-Structure-Sound Interactions and Control. Springer, 2019.

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12

Bijankhan, Mahmood. Phonology. Edited by Anousha Sedighi and Pouneh Shabani-Jadidi. Oxford University Press, 2018. http://dx.doi.org/10.1093/oxfordhb/9780198736745.013.5.

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This chapter reviews the organization of sounds in the contemporary Persian language and discusses the issues in phoneme inventory, syllable structure, distinctive features, phonological rules, rule interaction, and prosodic structure according to the framework of the derivational phonology. Laryngeal states responsible for contrast in pairs of homorganic stops and fricatives are different in Persian. Phonological status of continuancy is controversial for the uvular obstruent. Glottal stop is distinctive at the beginning of loan-words while not at the beginning of the original Persian words.
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13

Blake, William K. Mechanics of Flow-Induced Sound and Vibration Vol. 2: Complex Flow-Structure Interactions. Elsevier Science & Technology Books, 2017.

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14

Kerins, Mark. Multichannel Gaming and the Aesthetics of Interactive Surround. Edited by John Richardson, Claudia Gorbman, and Carol Vernallis. Oxford University Press, 2013. http://dx.doi.org/10.1093/oxfordhb/9780199733866.013.014.

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This article appears in theOxford Handbook of New Audiovisual Aestheticsedited by John Richardson, Claudia Gorbman, and Carol Vernallis. This chapter examines multichannel sound—specifically 5.1-channel surround sound—in video games, using gaming genres to explore the varying ways that games structure the three-way relationship among a multichannel sound track, onscreen visuals, and the game play itself. This approach uncovers distinct strategies of multichannel usage in platformers, first-person shooters, third-person 3D games, and rhythm games, and shows how these differ from traditional cin
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15

Simonet, Miguel. The Phonetics and Phonology of Bilingualism. Oxford University Press, 2016. http://dx.doi.org/10.1093/oxfordhb/9780199935345.013.72.

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This chapter provides a selective overview of recent research on the phonetics and phonology of bilingualism. The central idea put forth in the chapter is that, in bilingualism and second-language learning, cross-language categories are involved in complex interactions that can take many forms, including assimilations and dissimilations. The sound categories of the two languages of a bilingual seem to coexist in a common representational network and appear to be activated simultaneously in the processing of speech in real time, but some degree of specificity is attested. The chapter then goes
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16

Schwingungen von Windenergieanlagen 2016. VDI Verlag, 2016. http://dx.doi.org/10.51202/9783181022818.

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Entstehung, Übertragung und Reduzierung von Schall an Windkraftanlagen Kurzfassung Bei der Stromerzeugung in Windkraftanlagen können Geräusche entstehen, die vor allem durch die Aerodynamik der Blätter, den Eingriff der Zähne im Getriebe und die Interaktion der Generatorpole verursacht werden. Der vorliegende Beitrag gibt einen grundlegenden Überblick über Strukturschwingungen, die – je nach Eigenschwingverhalten der Anlagen – an die Außenflächen geleitet und dort in die Umgebung abgestrahlt werden. Elastomerlager, Kupplungen im Triebstrang, passive, adaptive und aktive Tilger werden als mögli
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17

Bever, Thomas G. The Unity of Consciousness and the Consciousness of Unity. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780190464783.003.0005.

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Every language-learning child eventually automatically segments the organization of word sequences into natural units. Within the natural units, processing of normal conversation reveals a disconnect between listener’s representation of the sound and meaning of utterances. A compressed or absent word at a point early in a sequence is unintelligible until later acoustic information, yet listeners think they perceived the earlier sounds and their interpretation as they were heard. This discovery has several implications: Our conscious unified experience of language as we hear and simultaneously
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18

Third International Symposium on Flow-Induced Vibration & Noise: Flow-Structure & Flow-Sound Interactions (Third International Symposium on Flow-Induced Vibration & No). American Society of Mechanical Engineers, 1992.

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