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1

Reilly, Brian Arthur. Structural analysis of the Paint Lake Deformation Zone, Northern Ontario. St. Catharines [Ont.]: Dept. of Earth Sciences, Brock University, 1987.

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2

Johnson, Arvid M. Folding of viscous layers: Mechanical analysis and interpretation of structures in deformed rock. New York: Columbia University Press, 1994.

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3

Chuang, T. J., and J. W. Rudnicki. Multiscale deformation and fracture in materials and structures: The James R. Rice 60th anniversary volume. New York: Kluwer Academic Publishers, 2002.

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4

J, Chuang T., Rudnicki J. W, and Rice J. R, eds. Multiscale deformation and fracture in materials and structures: The James R. Rice 60th anniversary volume. Dordrecht: Kluwer Academic Publishers, 2001.

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5

Reddy, J. N. A refined shear deformation theory for the analysis of laminated plates. [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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6

Nachatilo, S. A. Structural analysis of Archean rocks in the Negaunee area, Michigan: Constraints on Archean versus early Proterozoic deformation. Washington, DC: U.S. G.P.O., 1994.

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7

Turcotte, Donald Lawson. Analysis of regional deformation and strain accumulation data adjacent to the San Andreas Fault: Final technical report, November 1, 1986 - December 31, 1991. [Washington, DC: National Aeronautics and Space Administration, 1991.

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8

Quintus, H. L. Von. Calibration of rutting models for structural and mix design. Washington, D.C: Transportation Research Board, 2012.

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9

A, Felippa Carlos, and United States. National Aeronautics and Space Administration., eds. A three-dimensional nonlinear timoshenko beam based on the corecongruential formulation. [Washington, DC: National Aeronautics and Space Administration, 1992.

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10

A, Felippa Carlos, and United States. National Aeronautics and Space Administration., eds. A three-dimensional nonlinear timoshenko beam based on the corecongruential formulation. [Washington, DC: National Aeronautics and Space Administration, 1992.

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11

A, Felippa Carlos, and United States. National Aeronautics and Space Administration., eds. A three-dimensional nonlinear timoshenko beam based on the corecongruential formulation. [Washington, DC: National Aeronautics and Space Administration, 1992.

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12

A, Felippa Carlos, Park K. C, and United States. National Aeronautics and Space Administration., eds. Error estimation and adaptive mesh refinement for parallel analysis of shell structures. Boulder, Colo: Dept. of Aerospace Engineering Sciences and Center for Aerospace Structures, University of Colorado, 1994.

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13

A, Felippa Carlos, Park K. C, and United States. National Aeronautics and Space Administration., eds. Error estimation and adaptive mesh refinement for parallel analysis of shell structures. Boulder, Colo: Dept. of Aerospace Engineering Sciences and Center for Aerospace Structures, University of Colorado, 1994.

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14

Pramote, Dechaumphai, Thornton Earl A. 1936-, and Langley Research Center, eds. Finite element thermo-viscoplastic analysis of aerospace structures. Hampton, Va: NASA Langley Research Center, 1990.

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15

Pandey, Ajay K. Finite element thermo-viscoplastic analysis of aerospace structures. Hampton, Va: NASA Langley Research Center, 1990.

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16

Pramote, Dechaumphai, Thornton Earl A. 1936-, and Langley Research Center, eds. Finite element thermo-viscoplastic analysis of aerospace structures. Hampton, Va: NASA Langley Research Center, 1990.

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17

Pramote, Dechaumphai, Thornton Earl A. 1936-, and Langley Research Center, eds. Finite element thermo-viscoplastic analysis of aerospace structures. Hampton, Va: NASA Langley Research Center, 1990.

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18

1945-, Moore J. Casey, ed. Structural fabric in Deep Sea Drilling Project cores from forearcs. Boulder, Colo: Geological Society of America, 1986.

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19

S, Lake Mark, and Langley Research Center, eds. Analysis of a single-fold deployable truss beam preloaded by extension of selected face diagonal members. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1986.

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20

Center, Langley Research, ed. Micromechanics analysis of space simulated thermal deformations and stresses in continuous fiber reinforced composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1990.

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21

Complex manifolds and deformation of complex structures. New York: Springer-Verlag, 1986.

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22

Complex manifolds and deformation of complex structures. New York: Springer-Verlag, 1986.

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23

Stronge, W. J. Dynamic models for structural plasticity. London: Springer Verlag, 1993.

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24

1941-, Yu T. X., ed. Dynamic models for structural plasticity. London: Springer-Verlag, 1993.

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25

Al-Bermani, F. G. A. Elasto-plastic large deformation analysis f thin-walled structures. St. Lucia: University of Queensland, Dept. of Civil Engineering, 1989.

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26

Euromech Colloquium (197th 1985 Jabłonna, Warsaw, Poland). Finite rotations in structural mechanics: Proceedings of the Euromech Colloquium 197, Jabłonna, Poland, 1985. Berlin: Springer-Verlag, 1986.

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27

Patnaik, Surya N. Compatibility conditions of structural mechanics for finite element analysis. [Washington, DC]: National Aeronautics and Space Administration, 1990.

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28

Ławrynowicz, Julian. Deformations of Mathematical Structures: Complex Analysis with Physical Applications. Dordrecht: Springer Netherlands, 1988.

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29

1934-, Favre R. (Renaud), and Elbadry M, eds. Concrete structures: Stresses and deformations : analysis and design for serviceability. 4th ed. London: Taylor & Francis, 2012.

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30

1947-, Shchepinov V. P., ed. Strain and stress analysis by holographic and speckle interferometry. Chichester: J. Wiley, 1996.

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31

United States. National Aeronautics and Space Administration., ed. Analysis of large quasistatic deformations of inelastic solids by a new stress based finite element method. [Washington, DC]: National Aeronautics and Space Administration, 1992.

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32

Seminar on Deformations (1988-1992 Łódź, Poland and Malinka, Poland). Deformations of mathematical structures II: Hurwitz-type structures and applications to surface physics : selected papers from the Seminar on Deformations, Łódź-Malinka,1988/92. Dordrecht: Kluwer Academic Publishers, 1994.

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33

Ellis, John S. Deflections by Pasternak's theorem. Kingston, Ont., Canada: Dept. of Civil Engineering, Royal Military College, 1985.

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34

Seminar on Deformations (1985-1987 Łódź, Poland and Lublin, Poland). Deformations of mathematical structures: Complex analysis with physical applications : selected papers from the Seminar on Deformations, Łódź-Lublin, 1985/87. Dordrecht: Kluwer Academic Publishers, 1989.

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35

Eberhardshtayner, Yozef, Sergey Leonovich, and Valentin Dorkin. Design models of structural building materials under multiaxial stress. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1082947.

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The monograph presents the results of experimental and theoretical studies of the behavior of wood and concrete of various structures under biaxial and triaxial compression. It contains a systematic classification of existing models for concrete that link three-axis nonlinear elastic stresses and deformations, as well as research and subsequent evaluation of some basic models from the point of view of their possible use in the framework of spatial load analysis using FEM. It is intended for scientific and engineering workers of research and design organizations.
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36

Holnicki-Szulc, Jan. Virtual distortion method. Berlin: Springer-Verlag, 1991.

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37

Starlinger, Alois. Development of efficient finite shell elements for the analysis of sandwich structures under large deformations and global as well as local instabilities. Dusseldorf: VDI Verlag, 1991.

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38

Anderson, Melvin S. Inclusion of transverse shear deformation in the exact buckling and vibration analysis of composite plate asemblies. Hampton, Va: Langley Research Center, 1993.

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39

International Conference on Analysis of Discontinuous Deformation (5th 2002 Ben-Gurion University of the Neveg). Stability of rock structures: Proceedings of the 5th International Conference on Analysis of Discontinuous Deformation, ICADD-5, Ben-Gurion University of the Negev, Beer Sheva, Israel, 6-10 October 2002. Lisse: A.A. Balkema, 2002.

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40

Gong cheng bian xing jian ce fen xi yu bao de li lun yu shi jian. Beijing Shi: Zhong guo shui li shui dian chu ban she, 2008.

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41

Wang, C. M. Shear deformable beams and plates: Relationships with classical solutions. Amsterdam: Elsevier, 2000.

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42

Hyer, M. W. Innovative design of composite structures: Axisymmetric deformations of unsymmetrically laminated cylinders loaded in axial compression : semiannual status report. Blacksburg, Va: College of Engineering, Virginia Polytechnic Institute and State University, 1990.

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43

Liviu, Librescu, and Joint Mechanics Meeting of ASME, ASCE, SES (1st : 1993 : Charlottesville, Va.), eds. Non-classical problems of the theory and behavior of structures exposed to complex environmental conditions: Presented at the 1st Joint Mechanics Meeting of ASME, ASCE, SES, MEET'N '93, Charlottesville, Virginia, June 6-9, 1993. New York: American Society of Mechanical Engineers, 1993.

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44

E, Wilt Thomas, and United States. National Aeronautics and Space Administration., eds. Final technical report for the development of computational techniques for the nonlinear analysis of composite structures at high temperature: NASA grant number, NCC3-248, grant duration, January 13, 1992 to March 1, 1995. Toledo, Ohio: Dept. of Mechnical, Industrial and Manufacturing Engineering, University of Toledo, 1996.

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45

Allen, David H. Introduction to the Mechanics of Deformable Solids: Bars and Beams. New York, NY: Springer New York, 2013.

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46

Kennedy, Gary, Ana-Maria Castravet, and Emanuele Macri. Hodge theory and classical algebraic geometry: A conference on Hodge theory and classical algebraic geometry : May 13-15, 2013, the Ohio State University, Columbus, Ohio. Edited by Caibár Mirel 1967-. Providence, Rhode Island: American Mathematical Society, 2015.

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47

Conformal dynamics and hyperbolic geometry: A conferece in honor of Linda Keen's 70th birthday, October 22-24, 2010, Graduate School and University Center of CUNY, New York, New York. Providence, R.I: American Mathematical Society, 2010.

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48

Annual book of ASTM standards: Petroleum products, lubricants, and fossil fuels. West Conshohocken, PA: ASTM International, 2005.

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49

Moduli spaces of Riemann surfaces. Providence, Rhode Island: American Mathematical Society, 2013.

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50

Doran, Robert S., 1937- editor of compilation, Friedman, Greg, 1973- editor of compilation, and Nollet, Scott, 1962- editor of compilation, eds. Hodge theory, complex geometry, and representation theory: NSF-CBMS Regional Conference in Mathematics, June 18, 2012, Texas Christian University, Fort Worth, Texas. Providence, Rhode Island: American Mathematical Society, 2013.

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