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1

B, Lovelace Thomas, and United States. National Aeronautics and Space Administration., eds. Fatigue crack growth model RANDOM2 user manual: Appendix 1 of annual report of project entitled Development of advanced methodologies for probabilistic constitutive relationships of material strength models. Division of Engineering, University of Texas at San Antonio, 1989.

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2

B, Lovelace Thomas, and United States. National Aeronautics and Space Administration., eds. Fatigue strength reduction model, RANDOM3 and RANDOM4 user manual: Appendix 2 of annual report of project entitled Development of advanced methodologies for probabilistic constitutive relationships of material strength models. Division of Engineering, University of Texas at San Antonio, 1989.

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3

1944-, Boyce Lola, and United States. National Aeronautics and Space Administration., eds. Probabilistic material strength degradation model for Iconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects: Final technical report of project entitled Development of advanced methodologies for probabilistic constitutive relationships of material strength models, phase 5 and 6. Division of Engineering, University of Texas at San Antonio, 1995.

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4

1944-, Boyce Lola, and United States. National Aeronautics and Space Administration., eds. Probabilistic material strength degradation model for Iconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects: Final technical report of project entitled Development of advanced methodologies for probabilistic constitutive relationships of material strength models, phase 5 and 6. Division of Engineering, University of Texas at San Antonio, 1995.

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5

Chen, W. F. Constitutive equations for engineering materials. Elsevier, 1994.

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6

Chen, W. F. Constitutive equations for engineering materials. 2nd ed. Elsevier, 1994.

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7

Army Research Office Workshop on Constitutive Models (1986 Virginia Polytechnic Institute and State University). Constitutive models of deformation. SIAM, 1987.

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8

Timmermans, P. Evaluation of a constitutive model for solid polymeric materials. Eindhoven University of Technology, 1997.

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9

Jiří, Novák. Constitutive equations and ductile fracture of polycrystalline materials. Academia, 1996.

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10

H, Allen David, Harris Charles E. 1950-, and Langley Research Center, eds. A procedure for utilization of a damage-dependent constitutive model for laminated composites. National Aeronautics and Space Administration, Langley Research Center, 1992.

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11

Andreev, George E. Brittle failure of rock materials: Test results and constitutive models. A.A. Balkema, 1995.

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12

Egner, Halina. Modelowanie konstytutywne sprzężonych problemów mechaniki materiałów dyssypatywnych: Constitutive modeling of coupled dissipative phenomena in engineering materials = Modelação constitutiva de fenómenos dissipativos em engenharia dos materiais. Wydawnictwo PK, 2013.

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13

G, Meyer T., Walker K. P, and United States. National Aeronautics and Space Administration., eds. Life prediction and constitutive models for engine hot section anisotropic materials program: Final report. National Aeronautics and Space Administration, 1992.

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14

United States. National Aeronautics and Space Administration., ed. [Life prediction and constitutive models for engine hot section anisotropic materials program]: [interim report]. National Aeronautics and Space Administration, 1992.

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15

Z, Voyiadjis G., American Society of Mechanical Engineers. Materials Division., ASME Summer Structural Mechanics Conference (1992 : Tempe, Ariz.), and ASME Summer Materials Conference (1992 : Tempe, Ariz.), eds. Microstructural characterization in constitutive modeling of metals and granular media. American Society of Mechanical Engineers, 1992.

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16

Pettermann, Heinz. Derivation and finite element implementation of constitutive material laws for multiphase composites based on Mori-Tanaka approaches. VDI Verlag, 1997.

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17

Hui-Qian, Tan, Dong X, and United States. National Aeronautics and Space Administration., eds. Application of symbolic computations to the constitutive modeling of structural materials. NASA, 1990.

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18

A, Swanson G., and United States. National Aeronautics and Space Administration., eds. Life prediction and constitutive models for engine hot section anisotropic materials program: Second annual status report. National Aeronautics and Space Administration, 1987.

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19

P, Keating Jerome, Lovelace Thomas B, and United States. National Aeronautics and Space Administration., eds. PROMISC user manual: Appendix 2 of final technical report of project entitled development of advanced methodologies for probablilistic constitutive relationships of material strength degradation models, phase 2. Division of Engineering, University of Texas at San Antonio, 1990.

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20

M, Zbib Hussein, Demir Ismail 1960-, Zhu Hong-tao, American Society of Mechanical Engineers. Applied Mechanics Division., American Society of Mechanical Engineers. Materials Division., and Joint ASME Applied Mechanics and Materials Summer Meeting (1995 : Los Angeles, Calif.), eds. Micromechanics and constitutive modelling of composite materials: Presented at the 1995 Joint ASME Applied Mechanics and Materials Summer Meeting, Los Angeles, California, June 28-30, 1995. American Society of Mechanical Engineers, 1995.

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21

United States. National Aeronautics and Space Administration., ed. Nonlinear Constitutive Relations for High Temperature Application, 1986: Proceedings of a symposium held at University of Akron, Akron, Ohio, June 11-13, 1986. National Aeronautics and Space Administration, 1988.

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22

American Society of Mechanical Engineers. Winter Meeting. Constitutive modeling for nontraditional materials: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Boston Massachusetts, December 13-18, 1987. ASME, 1987.

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23

David, Freed Alan, Walker K. P, American Society of Mechanical Engineers. Meeting, American Society of Mechanical Engineers. Materials Division., and American Society of Mechanical Engineers. Applied Mechanics Division., eds. High temperature constitutive modeling--theory and application: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Atlanta, Georgia, December 1-6, 1991. American Society of Mechanical Engineers, 1991.

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24

American Society of Mechanical Engineers. Winter Meeting. Constitutive modelling for engineering materials with applications: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Chicago, Illinois, November 27-December 2, 1988. American Society of Mechanical Engineers, 1988.

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25

B, Lovelace Thomas, and United States. National Aeronautics and Space Administration., eds. PROMISS user manual: Appendix 1 of final technical report of project entitled Development of advanced methodologies for probabilistic constitutive relationships of material strength degradation models, phase 2. Division of Engineering, University of Texas at San Antonio, 1990.

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26

Mohammad-Bidhendi, Mohammad-Hossein. A double-shearing constitutive model and application to particulate material modeling. 2002.

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27

Prendergast, Thomas, and Stephanie Trigg. Affective medievalism. Manchester University Press, 2018. http://dx.doi.org/10.7228/manchester/9781526126863.001.0001.

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This book destabilises the customary disciplinary and epistemological oppositions between medieval studies and modern medievalism. It argues that the twinned concepts of “the medieval” and post-medieval “medievalism” are mutually though unevenly constitutive, not just in the contemporary era, but from the medieval period on. Medieval and medievalist culture share similar concerns about the nature of temporality, and the means by which we approach or “touch” the past, whether through textual or material culture, or the conceptual frames through which we approach those artefacts. Those approache
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28

Constitutive Models For Rubber Vi. CRC Press, 2009.

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29

Heinrich, Gert, Alexander Lion, Michael Kaliske, and Stefanie Reese. Constitutive Models for Rubber VI. Taylor & Francis Group, 2009.

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30

Heinrich, Gert, Alexander Lion, Michael Kaliske, and Stefanie Reese. Constitutive Models for Rubber VI. Taylor & Francis Group, 2009.

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31

Heinrich, Gert, Alexander Lion, and Michael Kaliske. Constitutive Models for Rubber VI. Taylor & Francis Group, 2009.

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32

Constitutive Models for Rubber VIII. Taylor & Francis Group, 2013.

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33

Gil-Negrete, Nere, and Asier Alonso. Constitutive Models for Rubber VIII. Taylor & Francis Group, 2013.

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34

Gil-Negrete, Nere, and Asier Alonso. Constitutive Models for Rubber VIII. Taylor & Francis Group, 2013.

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35

Gil-Negrete, Nere. Constitutive Models for Rubber VIII. Taylor & Francis Group, 2013.

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36

Gil-Negrete, Nere, and Asier Alonso. Constitutive Models for Rubber VIII. Taylor & Francis Group, 2013.

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37

Gil-Negrete, Nere, and Asier Alonso. Constitutive Models for Rubber VIII. Taylor & Francis Group, 2013.

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38

Heinrich, Gert, Alexander Lion, Michael Kaliske, and Stefanie Reese. Constitutive Models for Rubber VI. Taylor & Francis Group, 2009.

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39

Heinrich, Gert, Alexander Lion, Michael Kaliske, and Stefanie Reese. Constitutive Models for Rubber VI. Taylor & Francis Group, 2009.

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40

Heinrich, Gert, Alexander Lion, Michael Kaliske, and Stefanie Reese. Constitutive Models for Rubber VI. Taylor & Francis Group, 2009.

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41

Jenkins, James T., and M. Satake. Mechanics of Granular Materials: New Models and Constitutive Relations. Elsevier Science & Technology Books, 2017.

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42

Constitutive Models For Hyperelastic Materials Study And Numerical Implementation. VDM Verlag, 2010.

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43

Unified constitutive material models for nonlinear finite-element structural analysis. National Aeronautics and Space Administration, 1985.

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44

Unified constitutive material models for nonlinear finite-element structural analysis. National Aeronautics and Space Administration, 1985.

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45

Constitutive Models for Rubber X: Proceedings of the European Conference on Constitutive Models for Rubbers X. Taylor & Francis Group, 2017.

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46

Lion, Alexander, and Michael Johlitz. Constitutive Models for Rubber X: Proceedings of the European Conference on Constitutive Models for Rubbers X. Taylor & Francis Group, 2017.

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47

Lion, Alexander, and Michael Johlitz. Constitutive Models for Rubber X: Proceedings of the European Conference on Constitutive Models for Rubbers X. Taylor & Francis Group, 2017.

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48

Lion, Alexander, and Michael Johlitz. Constitutive Models for Rubber X: Proceedings of the European Conference on Constitutive Models for Rubbers X. Taylor & Francis Group, 2017.

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49

Winkler, Carol, and Kareem El Damanhoury. Proto-State Media Systems. Oxford University Press, 2022. http://dx.doi.org/10.1093/oso/9780197568026.001.0001.

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Proto-State Media Systems explores how militant, non-state organizations create, develop, and sustain media systems in the contemporary environment. It challenges generalized applications of dominant state-based media system models by revealing how such approaches lack full explanatory power for assessing the structures and functions of media systems of groups like al-Qaeda and ISIS. Utilizing theories of constitutive discourse and online networks, as well as revised conceptualizations of proto-states and media systems, the book explores how militant proto-states can create identity-based medi
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50

National Aeronautics and Space Administration (NASA) Staff. Life Prediction and Constitutive Models for Engine Hot Section Anisotropic Materials Program. Independently Published, 2018.

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