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1

International Conference on Soil Dynamics and Earthquake Engineering (4th 1989 Mexico City, Mexico). Structural dynamics and soil-structure interaction. Redaktorzy Cakmak A. S. 1934- i Herrera Ismael. Ashurst: Computational Mechanics, 1989.

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2

Engineers, Institution of Structural. Soil-structure interaction: The real behaviour of structures. London: The Institution of Structural Engineers, 1989.

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3

Thurston, Gaylen A. Modal interaction in postbuckled plates: Theory. Washington, D.C: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1989.

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4

Frajzyngier, Zygmunt. Explaining language structure through systems interaction. Philadelphia, PA: John Benjamins Pub., 2003.

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5

Frajzyngier, Zygmunt. Explaining language structure through systems interaction. Amsterdam: Benjamins, 2002.

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6

Fenves, Gregory L. Evaluation of soil-structure interaction in buildings during earthquakes. Sacramento, Calif: California Dept. of Conservation, Division of Mines and Geology, Office of Strong Motion Studies, 1992.

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7

Thompson, Catherine Isabelle. Protein interaction studies on the rotavirus non-structural protein NSP1. [s.l.]: typescript, 1999.

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8

Wolf, John P. Soil-structure-interaction analysis in time domain. Englewood Cliffs, N.J: Prentice Hall, 1988.

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9

European Committee for Standardization. Eurocode 7: Geotechnical design. London: British Standards Institution, 1995.

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10

European Committee for Standardization. Eurocode 7: A commentary. London: Construction Research Communications Ltd., 1998.

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11

Explorations in structural analysis: Dual and multiple networks of social interaction. New York: Garland Pub., 1991.

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12

Steitz, Thomas A. Structural studies of protein-nucleic acid interaction: Thesources of sequence-specific binding. Cambridge: Cambridge University Press, 1993.

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13

Voracek, David F. Buffet induced structural/flight-control system interaction of the X-29A aircraft. Edwards, Calif: National Aeronautics and Space Administration, Ames Research Center, Dryden Flight Research Facility, 1991.

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14

Steitz, Thomas A. Structural studies of protein-nucleic acid interaction: The sources of sequence-specific binding. New York, NY, USA: Cambridge University Press, 1993.

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15

Howe, M. S. Acoustics of fluid-structure interactions. Cambridge: Cambridge University Press, 1998.

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16

Howe, M. S. Acoustics of fluid-structure interactions. Cambridge, UK: Cambridge University Press, 1998.

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17

1941-, Anderson L. R., red. Structural mechanics of buried pipes. Boca Raton, FL: CRC Press, 2000.

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18

Borri, Claudio, i Claudio Mannini, red. Aeroelastic Phenomena and Pedestrian-Structure Dynamic Interaction on Non-Conventional Bridges and Footbridges. Florence: Firenze University Press, 2010. http://dx.doi.org/10.36253/978-88-6453-202-8.

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Streszczenie:
Fluid-structure and pedestrian-structure interaction phenomena are extremely important for non-conventional bridges. The results presented in this volume concern: simplified formulas for flutter assessment; innovative structural solutions to increase the aeroelastic stability of long-span bridges; numerical simulations of the flow around a benchmark rectangular cylinder; examples of designs of large structures assisted by wind-tunnel tests; analytical, computational and experimental investigation of the synchronisation mechanisms between pedestrians and footbridge structures. The present book is addressed to a wide audience including professionals, doctoral students and researchers, aiming to increase their know-how in the field of wind engineering, bluff-body aerodynamics and bridge dynamics.
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19

J, Eyles Stephen, red. Mass spectrometry in structural biology and biophysics: Architecture, dynamics, and interaction of biomolecules. Wyd. 2. Hoboken, N.J: Wiley, 2012.

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20

Kreuzer, Edwin. IUTAM Symposium on Fluid-Structure Interaction in Ocean Engineering. Dordrecht: Springer Science+Business Media B.V., 2008.

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21

White, Harrison C. Identity and control: A structural theory of social action. Princeton, N.J: Princeton University Press, 1992.

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22

From continental extension to collision: Africa-Europe interaction, the Dead Sea and analogue natural laboratories. Katlenburg-Lindau: Copernicus, 2002.

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23

Joplin, Missouri, tornado of May 22, 2011: Structural damage survey and case for tornado-resilient building codes. Reston, Va: American Society of Civil Engineers, 2013.

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24

Chargin, Mladen. A finite element procedure for calculating fluid-structure interaction using MSC/NASTRAN. Moffett Field, Calif: NASA Ames Research Center, 1990.

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25

Anderson, Keith W. Gabion wall soil interaction study: I-90, Snoqualmie Pass vicinity : final report, experimental feature WA 75-03. [Olympia, WA]: Washington State Dept. of Transportation, Planning, Research and Public Transportation Division in cooperation with the U.S. Dept. of Transportation, Federal Highway Administration, 1988.

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26

Guruswamy, Guru P. User's guide for ENSAERO--a multidisciplinary program for fluid/structural/control interaction studies of aircraft (release 1). Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1994.

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27

Guruswamy, Guru P. User's guide for ENSAERO--a multidisciplinary program for fluid/structural/control interaction studies of aircraft (release 1). Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1994.

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28

Guruswamy, Guru P. User's guide for ENSAERO--a multidisciplinary program for fluid/structural/control interaction studies of aircraft (release 1). Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1994.

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29

Guruswamy, Guru P. User's guide for ENSAERO--a multidisciplinary program for fluid/structural/control interaction studies of aircraft (release 1). Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1994.

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30

Pressure, Vessels and Piping Conference (2003 Cleveland Ohio). Problems involving thermal-hydraulics, liquid sloshing, and extreme loads on structures: Presented at the 2003 ASME Pressure Vessels and Piping Conference, Cleveland, Ohio, July 20-24, 2003. New York, N.Y: American Society of Mechanical Engineers, 2003.

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31

Jonathan, Knappett, i Haigh Stuart, red. Design of pile foundations in liquefiable soils. London: Imperial College Press, 2010.

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32

Ryan, Robert S. Structures dynamics and control interaction of flexible structures: Proceedings of a workshop held at George C. Marshall Space Flight Center, Huntsville, Ala., Apr. 22-24, 1986. Huntsville, Ala: Marshall Space Flight Center, 1987.

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33

Kwon, Young W. Fluid-Structure Interaction of Composite Structures. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-57638-7.

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34

S, Cakmak A., i Herrera Ismael, red. Structural dynamics and soil-structure interaction: Proceedings of the fourth International Conference on Soil Dynamics and Earthquake Engineering, Mexico City, Mexico, October 1989. Southampton: Computational Mechanics Publications, 1989.

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35

Institut für Baustatik und Konstruktion ETH Zürich., red. Rational transmitting boundaries for time-domain analysis of dam-reservoir interaction. Basel: Birkhäuser Verlag, 1994.

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36

Ma, D. C., D. M. Jerome i Shin-Jung Chang. Structures under extreme loading conditions, fluid-structure interaction, and structural mechanics problems in reactor safety 1999: Presented at the 1999 ASME Pressure Vessels and Piping Conference, Boston, Massachusetts, August 1-5, 1999. Redaktorzy American Society of Mechanical Engineers. Pressure Vessels and Piping Division i Pressure Vessels and Piping Conference (1999 : Boston, Mass.). New York, N.Y: American Society of Mechanical Engineers, 1999.

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37

1925-, Ryan Robert S., Scofield Harold N i United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch, red. Structural dynamics and control interaction of flexible structures. [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1987.

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38

Interaction Between Structural and Geotechnical Engineers. Thomas Telford, Ltd, 2003.

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39

Schumacker, Randall E., i George A. Marcoulides, red. Interaction and Nonlinear Effects in Structural Equation Modeling. Routledge, 2017. http://dx.doi.org/10.4324/9781315092614.

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40

E, Schumacker Randall, i Marcoulides George A, red. Interaction and nonlinear effects in structural equation modeling. Mahwah, N.J: L. Erlbaum Associates, 1998.

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41

Manolis, Papadrakakis, Topping B. H. V i International Conference on Computational Structures Technology (2nd : 1994 : Athens, Greece), red. Advances in simulation and interaction techniques. Edinburgh, UK: Civil-Comp Press, 1994.

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42

M, O'Farrell J., i George C. Marshall Space Flight Center., red. High frequency flow/structural interaction in dense subsonic fluids. Marshall Space Flight Center, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 1995.

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43

M, O'Farrell J., i George C. Marshall Space Flight Center, red. High frequency flow/structural interaction in dense subsonic fluids. Marshall Space Flight Center, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 1995.

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44

M, O'Farrell J., i United States. National Aeronautics and Space Administration., red. High frequency flow/structural interaction in dense subsonic fluids. [Huntsville, Ala.]: Rockwell Aerospace, Space Systems Division, Huntsville Operations, 1994.

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45

Interaction of acoustic waves generated by coupled plate. Boca Raton, Fla: Center for Acoustics and Vibration, Florida Atlantic University, 1990.

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46

Integrating individual, relational and structural analysis. Toronto: University of Toronto, Dept. of Sociology, 1988.

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47

Explorations in Structural Analysis: Dual and Multiple Networks of Social Interaction. Taylor & Francis Group, 2014.

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48

Center, Langley Research, red. NASA future mission needs and benefits of controls: Structural interaction technology. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1991.

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49

Breiger, Ronald L. Explorations in Structural Analysis: Dual and Multiple Networks of Social Interaction. Taylor & Francis Group, 2016.

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50

Structural dynamic interaction with solar tracking control for evolutionary space station concepts. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1992.

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