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1

G, Capriz, Giovine Pasquale 1959-, Mariano Paolo Maria 1966-, and Barrat Alain 1971-, eds. Mathematical models of granular matter. Berlin: Springer, 2008.

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2

Mira, Mitra, ed. Wavelet methods for dynamical problems: With application to metallic, composite, and nano-composite structures. Boca Raton: Taylor & Francis, 2010.

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3

AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference (59th 2018 Kissimmee, Fla.). AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference 2018: Held at the AIAA SciTech Forum 2018, Kissimee, Florida, USA 8-12 January 2018. Reston, VA, USA: American Institute of Aeronautics and Astronautics, 2018.

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4

M, Wang C., Wang C. Y. 1939-, and Reddy J. N. 1945-, eds. Exact solutions for buckling of structural members. Boca Raton, FL: CRC Press, 2005.

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5

Nelson, Sadowski, ed. Magnetic materials and 3D finite element modeling. Boca Raton: CRC Press, 2014.

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6

Thomas, David. Radio Control Foam Modelling. Nexus Special Interest Ltd, 1989.

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7

Couronnes et guirlandes: [plus de 50 modèles à réaliser à partir des techniques et des matériaux les plus divers]. Paris: Ed. Fleurus, 1996.

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8

Satoh, Akira. Modeling of Magnetic Particle Suspensions for Simulations. Taylor & Francis Group, 2017.

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9

Materials Design Using Computational Intelligence Techniques. Taylor & Francis Group, 2016.

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10

Datta, Shubhabrata. Materials Design Using Computational Intelligence Techniques. Taylor & Francis Group, 2016.

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11

Datta, Shubhabrata. Materials Design Using Computational Intelligence Techniques. Taylor & Francis Group, 2016.

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12

Satoh, Akira. Modeling of Magnetic Particle Suspensions for Simulations. Taylor & Francis Group, 2017.

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13

Datta, Shubhabrata. Materials Design Using Computational Intelligence Techniques. Taylor & Francis Group, 2016.

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14

Datta, Shubhabrata. Materials Design Using Computational Intelligence Techniques. Taylor & Francis Group, 2016.

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15

Satoh, Akira. Modeling of Magnetic Particle Suspensions for Simulations. Taylor & Francis Group, 2017.

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16

Modeling of Magnetic Particle Suspensions for Simulations. Taylor & Francis Group, 2016.

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17

Sadiku, Matthew N. O., and Sudarshan R. Nelatury. Analytical Techniques in Electromagnetics. Taylor & Francis Group, 2015.

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18

Ramm, E., W. Ehlers, H. J. Hermann, and P. A. Vermeer. Modelling of Cohesive-Frictional Materials: Proceedings of Second International Symposium on Continuous and Discontinuous Modelling of Cohesive-Frictional Materials , Held in Stuttgart 27-28 Sept. 2004. Taylor & Francis Group, 2014.

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19

Ramm, E., W. Ehlers, H. J. Hermann, P. A. Vermeer, and P. A. Vermeer. Modelling of Cohesive-Frictional Materials: Proceedings of Second International Symposium on Continuous and Discontinuous Modelling of Cohesive-Frictional Materials , held in Stuttgart 27-28 Sept. 2004. Taylor & Francis Group, 2004.

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20

Modelling of Cohesive-Frictional Materials. Taylor & Francis, 2004.

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21

Sadiku, Matthew N. O., and Sudarshan R. Nelatury. Analytical Techniques in Electromagnetics. Taylor & Francis Group, 2015.

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22

Haghi, A. K., Satya Bir Singh, and Alexander V. Vakhrushev. Materials Physics and Chemistry: Applied Mathematics and Chemo-Mechanical Analysis. Apple Academic Press, Incorporated, 2020.

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23

Haghi, A. K., Satya Bir Singh, and Alexander V. Vakhrushev. Materials Physics and Chemistry: Applied Mathematics and Chemo-Mechanical Analysis. Apple Academic Press, Incorporated, 2020.

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24

Sadiku, Matthew N. O., and Sudarshan R. Nelatury. Analytical Techniques in Electromagnetics. Taylor & Francis Group, 2015.

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25

Ramm, E., W. Ehlers, H. J. Hermann, and P. A. Vermeer. Modelling of Cohesive-Frictional Materials: Proceedings of Second International Symposium on Continuous and Discontinuous Modelling of Cohesive-Frictional Materials , Held in Stuttgart 27-28 Sept. 2004. Taylor & Francis Group, 2004.

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26

Haghi, A. K., Satya Bir Singh, and Alexander V. Vakhrushev. Materials Physics and Chemistry: Applied Mathematics and Chemo-Mechanical Analysis. Apple Academic Press, Incorporated, 2020.

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27

Ramm, E., W. Ehlers, P. A. Vermeer, and H. J. Hermann. Modelling of Cohesive-Frictional Materials: Proceedings of Second International Symposium on Continuous and Discontinuous Modelling of Cohesive-Frictional Materials , Held in Stuttgart 27-28 Sept. 2004. Taylor & Francis Group, 2007.

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28

Ramm, E., W. Ehlers, H. J. Hermann, and P. A. Vermeer. Modelling of Cohesive-Frictional Materials: Proceedings of Second International Symposium on Continuous and Discontinuous Modelling of Cohesive-Frictional Materials , Held in Stuttgart 27-28 Sept. 2004. Taylor & Francis Group, 2007.

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29

Haghi, A. K., Satya Bir Singh, and Alexander V. Vakhrushev. Materials Physics and Chemistry: Applied Mathematics and Chemo-Mechanical Analysis. Apple Academic Press, Incorporated, 2020.

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30

Ramm, E., W. Ehlers, H. J. Hermann, and P. A. Vermeer. Modelling of Cohesive-Frictional Materials. Taylor & Francis Group, 2004.

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31

Materials Physics and Chemistry. Taylor & Francis Group, 2020.

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32

Analytical Techniques in Electromagnetics. Taylor & Francis Group, 2015.

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33

Materials Physics and Chemistry: Applied Mathematics and Chemo-Mechanical Analysis. Apple Academic Press, Incorporated, 2022.

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34

Taylor, David. The Theory of Critical Distances. Elsevier Science, 2007.

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35

Eigenvalues of inhomogeneous structures: Unusual closed-form solutions. Boca Raton, Fla: CRC Press, 2005.

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36

Yu, Mao-Hong, and Shu-Qi Yu. Introduction to Unified Strength Theory. Taylor & Francis Group, 2019.

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37

Wang, Yi, and Zi-Kui Liu. Computational Thermodynamics of Materials. Cambridge University Press, 2016.

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38

Yu, Mao-Hong, and Shu-Qi Yu. Introduction to Unified Strength Theory. Taylor & Francis Group, 2019.

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39

Yu, Shu-Qi, and Mao-hong Yu. Introduction to Unified Strength Theory. Taylor & Francis Group, 2019.

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40

Elishakoff, Isaac. Eigenvalues of Inhomogeneous Structures: Unusual Closed-Form Solutions. CRC, 2004.

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41

Computational Thermodynamics of Materials. Cambridge University Press, 2016.

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42

Introduction to Unified Strength Theory. Taylor & Francis Group, 2019.

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43

drjad. Physique des Matériaux: PROPRIÉTÉS ELECTRIQUES le Modèle de l'électron Libre , THERMIQUES , MAGNETIQUES , des Matériaux. Independently Published, 2021.

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44

Uncertainty Quantification of Stochastic Defects in Materials. Taylor & Francis Group, 2021.

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45

Chu, Liu. Uncertainty Quantification of Stochastic Defects in Materials. Taylor & Francis Group, 2021.

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46

Chu, Liu. Uncertainty Quantification of Stochastic Defects in Materials. CRC Press LLC, 2021.

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47

Numerical Modeling of Discrete Materials in Geotechnical Engineering, Civil Engineering, & Earth Sciences. Taylor & Francis, 2004.

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48

Nonlinear Computational Solid Mechanics. Taylor & Francis Group, 2017.

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49

Gupta, Devendra. Diffusion Processes in Advanced Technological Materials. Springer, 2010.

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50

Gupta, Devendra. Diffusion Processes in Advanced Technological Materials. Springer, 2013.

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