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Books on the topic 'Wave-structure interaction'

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1

Pressure Vessels and Piping Conference (1989 Honolulu, Hawaii). Shock and wave propagation, fluid-structure interaction, and structural responses: Presented at the 1989 ASME Pressure Vessels and Piping Conference, JSME co-sponsorship, Honolulu, Hawaii, July 23-27, 1989. American Society of Mechanical Engineers, 1989.

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2

Advisory Group for Aerospace Research and Development. ElectromagneticWave Propagation Panel., ed. Ionospheric structure and variability on a global scale and interactio ns with atmosphere and magnetosphere: Papers presented at the Electromagnetic Wave Propagation Panel Symposium held in Munich, Germany, 16-20 May 1988. Agard, 1989.

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3

Advanced Numerical Modelling of Wave Structure Interaction. CRC Press, 2022.

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4

Kelly, David M., Angelos Dimakopoulos, and Pablo Higuera Caubilla. Advanced Numerical Modelling of Wave Structure Interaction. Taylor & Francis Group, 2021.

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5

David, Kelly, Angelos Dimakopoulos, and Pablo Higuera Caubilla. Advanced Numerical Modelling of Wave Structure Interaction. Taylor & Francis Group, 2021.

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6

Kelly, David M., Angelos Dimakopoulos, and Pablo Higuera Caubilla. Advanced Numerical Modelling of Wave Structure Interaction. Taylor & Francis Group, 2021.

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7

Kelly, David M., Angelos Dimakopoulos, and Pablo Higuera Caubilla. Advanced Numerical Modelling of Wave Structure Interaction. Taylor & Francis Group, 2021.

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8

Advanced Numerical Modelling of Wave Structure Interaction. Taylor & Francis Group, 2021.

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9

Lehmann, Lutz. Wave Propagation in Infinite Domains: With Applications to Structure Interaction. Springer, 2010.

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10

Lehmann, Lutz. Wave Propagation in Infinite Domains: With Applications to Structure Interaction. Springer London, Limited, 2007.

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11

Lehmann, Lutz. Wave Propagation in Infinite Domains: With Applications to Structure Interaction (Lecture Notes in Applied and Computational Mechanics). Springer, 2007.

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12

Coastal Engineering – Waves, Beaches, Wave-Structure Interactions. Elsevier, 1995. http://dx.doi.org/10.1016/s0165-1250(06)x8034-3.

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13

Sawaragi, T. Coastal Engineering - Waves, Beaches, Wave-Structure Interactions. Elsevier Science & Technology Books, 1995.

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14

Coastal engineering: Waves, beaches, wave-structure interactions. Elsevier, 1995.

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15

Linton, C. M., and P. McIver. Handbook of Mathematical Techniques for Wave/Structure Interactions. Chapman and Hall/CRC, 2001. http://dx.doi.org/10.1201/9781420036060.

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16

Linton, C. M., and P. McIver. Handbook of Mathematical Techniques for Wave/Structure Interactions. Taylor & Francis Group, 2001.

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17

Linton, C. M., and P. McIver. Handbook of Mathematical Techniques for Wave/Structure Interactions. Taylor & Francis Group, 2001.

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18

McIver, P., and Christopher Linton. Handbook of Mathematical Techniques for Wave/Structure Interactions. Taylor & Francis Group, 2010.

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19

Handbook of Mathematical Techniques for Wave/Structure Interactions. Chapman & Hall/CRC, 2001.

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20

Mathematical Techniques For Wave Interaction With Flexible Structures. CRC Press, 2012.

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21

Sahoo, Trilochan. Mathematical Techniques for Wave Interaction with Flexible Structures. Taylor & Francis Group, 2012.

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22

Sahoo, Trilochan. Mathematical Techniques for Wave Interaction with Flexible Structures. Taylor & Francis Group, 2019.

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23

Sahoo, Trilochan. Mathematical Techniques for Wave Interaction with Flexible Structures. Taylor & Francis Group, 2012.

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24

Sahoo, Trilochan. Mathematical Techniques for Wave Interaction with Flexible Structures. Taylor & Francis Group, 2012.

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25

Jeng, Dong-Sheng. Mechanics of Wave-Seabed-Structure Interactions: Modelling, Processes and Applications. Cambridge University Press, 2018.

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26

Jeng, Dong-Sheng. Mechanics of Wave-Seabed-Structure Interactions: Modelling, Processes and Applications. Cambridge University Press, 2018.

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27

Jeng, Dong-Sheng. Mechanics of Wave-Seabed-Structure Interactions: Modelling, Processes and Applications. Cambridge University Press, 2018.

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28

Webster Jr., Murray, and Lisa Slattery Walker, eds. Unequals. Oxford University Press, 2022. http://dx.doi.org/10.1093/oso/9780197600009.001.0001.

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This book presents current theory development and empirical research on how status and expectation processes structure interaction. Chapters describe the development and current state of knowledge on these processes, relations to other group processes such as social exchange and stigma processes, and applications to elementary education and business organizations. Recent research is summarized on how status differences—which are culturally created and maintained—affect interaction, estimates of ability and social worth, and many other behaviors and impressions. Chapters describe the most recen
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29

Zeitlin, Vladimir. Resonant Wave Interactions and Resonant Excitation of Wave-guide Modes. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198804338.003.0012.

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The idea of resonant nonlinear interactions of waves, and of resonant wave triads, is first explained using the example of Rossby waves, and then used to highlight a mechanism of excitation of wave-guide modes, by impinging free waves at the oceanic shelf, and at the equator. Physics and mathematics of the mechanism, which is related to the phenomena of parametric resonance and wave modulation, are explained in detail in both cases. The resulting modulation equations, of Ginzburg–Landau or nonlinear Schrodinger type, are obtained by multi-scale asymptotic expansions and elimination of resonanc
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30

Chimenti, Dale, Stanislav Rokhlin, and Peter Nagy. Physical Ultrasonics of Composites. Oxford University Press, 2011. http://dx.doi.org/10.1093/oso/9780195079609.001.0001.

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Physical Ultrasonics of Composites is a rigorous introduction to the characterization of composite materials by means of ultrasonic waves. Composites are treated here not simply as uniform media, but as inhomogeneous layered anisotropic media with internal structure characteristic of composite laminates. The objective here is to concentrate on exposing the singular behavior of ultrasonic waves as they interact with layered, anisotropic materials, materials which incorporate those structural elements typical of composite laminates. This book provides a synergistic description of both modeling a
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31

Eriksson, Olle, Anders Bergman, Lars Bergqvist, and Johan Hellsvik. Aspects of the Solid State. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198788669.003.0002.

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Symmetries play an important role in the theory of the solid state. As will be developed in this Chapter, DFT calculations for crystalline materials are commonly performed for the irreducible part of the first Brillouin zone, an approach which relies on the use of translational and point group symmetries. Two central properties that result from a calculation in reciprocal space are the wave vector resolved energy spectra, the so called band structure, and the energy resolved density of states. For magnetic materials, atomic magnetic moment moments can be defined and calculated, as well as effe
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