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1

Argonne National Laboratory. Modeling and simulation. [Argonne, Ill.?]: The Laboratory, 1997.

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2

Argonne National Laboratory. Modeling and simulation. [Argonne, Ill.?]: The Laboratory, 1997.

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3

Heller, Moshe R. Nuclear Simulation: Proceedings of an International Symposium and Workshop, October 1987, Schliersee, West Germany. Berlin, Heidelberg: Springer Berlin Heidelberg, 1987.

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4

Keyhani, Ali. Design of smart power grid renewable energy systems. Hoboken, N.J: Wiley, 2011.

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5

Piazza, Maria Carmela Di. Photovoltaic Sources: Modeling and Emulation. London: Springer London, 2013.

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6

Júnior, Silvio de Oliveira. Exergy: Production, Cost and Renewability. London: Springer London, 2013.

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7

G, Wilson David, and SpringerLink (Online service), eds. Nonlinear Power Flow Control Design: Utilizing Exergy, Entropy, Static and Dynamic Stability, and Lyapunov Analysis. London: Springer-Verlag London Limited, 2011.

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8

Heller, Moshe R. Nuclear Simulation: Second European Nuclear Simulation Symposium Schliersee, October 1990 - Proceedings. Berlin, Heidelberg: Springer Berlin Heidelberg, 1990.

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9

Canada. CANMET Energy Diversification Research Laboratory. Renewable energy technologies project assessment tool: RETScreen. Varennes, Quebec: Natural and Resources Canada, 1998.

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10

Regional Follow-up Seminar, Education and Simulation in the Field of Renewable Energy in South and South-East Asia (1996 New Delhi, India). Regional Follow-up Seminar, Education and Simulation in the Field of Renewable Energy in South and South-East Asia: Proceedings. Edited by Misra Anil, Knagge Edu, Tata Energy Research Institute, and Universität Oldenburg. Renewable Energy Group. New Delhi: Tata Energy Research Institute, 1996.

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11

Rekioua, Djamila. Optimization of Photovoltaic Power Systems: Modelization, Simulation and Control. London: Springer London, 2012.

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12

Böer, Karl W. Advances in Solar Energy: An Annual Review of Research and Development. Boston, MA: Springer US, 1988.

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13

Böer, Karl W. Advances in Solar Energy: An Annual Review of Research and Development. Boston, MA: Springer US, 1989.

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14

Böer, Karl W. Advances in Solar Energy: An Annual Review of Research and Development. Boston, MA: Springer US, 1991.

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15

Winter, C. J. Hydrogen as an Energy Carrier: Technologies, Systems, Economy. Berlin, Heidelberg: Springer Berlin Heidelberg, 1988.

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16

Yang, Yuhang. Green Communications and Networks: Proceedings of the International Conference on Green Communications and Networks (GCN 2011). Dordrecht: Springer Netherlands, 2012.

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17

Cadenas, Juan José Gómez. L’ambientalista nucleare: Alternative al cambiamento climatico. Milano: Springer Milan, 2012.

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18

Jyotirmay, Mathur, and SpringerLink (Online service), eds. Introduction to Hydro Energy Systems: Basics, Technology and Operation. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2011.

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19

Cotrell, Jason Rust. Modeling the feasibility of using fuel cells and hydrogen internal combustion engines in remote renewable energy systems: Technical report. Golden, CO: National Renewable Energy Laboratory, 2003.

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20

Aris, Dimeas, Tomtsi Thomai, Weidlich Anke, and SpringerLink (Online service), eds. Energy-Efficient Computing and Networking: First International Conference, E-Energy 2010, Athens, Greece, October 14-15, 2010, Revised Selected Papers. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011.

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21

Cadenas, Juan José Gomez. The Nuclear Environmentalist: Is There a Green Road to Nuclear Energy? Milano: Springer Milan, 2012.

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22

Jovanović, Aleksandar S. Expert Systems in Structural Safety Assessment: Proceedings of an International Course October 2-4, 1989, Stuttgart, FRG. Berlin, Heidelberg: Springer Berlin Heidelberg, 1989.

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23

Doru, Talabǎ, and Roche Thomas Ph D, eds. Product engineering: Eco-design, technologies and green energy. Dordrecht: Springer, 2004.

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24

C, Julien, and Stoĭnov Z. B, eds. Materials for lithium-ion batteries. Dordrecht: Kluwer Academic Publishers, 2000.

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25

Almeida, Aníbal T. Integrated Electricity Resource Planning. Dordrecht: Springer Netherlands, 1994.

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26

Qimei, Cui, Xu Xiaodong, Zhang Ping, and SpringerLink (Online service), eds. Group Cell Architecture for Cooperative Communications. New York, NY: Springer New York, 2012.

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27

Kaźmierski, Tom J. Energy Harvesting Systems: Principles, Modeling and Applications. New York, NY: Springer Science+Business Media, LLC, 2011.

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28

Wang, Tianran. Advanced Manufacturing Technology in China: A Roadmap to 2050. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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29

Christofides, Panagiotis D. Networked and Distributed Predictive Control: Methods and Nonlinear Process Network Applications. London: Springer-Verlag London Limited, 2011.

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30

Modern mechanics: Maintaining tomorrow's green vehicles. Broomall, Pa: Mason Crest Publishers, 2011.

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31

J, Lee Myung, and SpringerLink (Online service), eds. Green IT: Technologies and Applications. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011.

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32

Buxton, Gavin. Alternative Energy Technologies: An Introduction with Computer Simulations. Taylor & Francis Group, 2017.

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33

Buxton, Gavin. Alternative Energy Technologies: An Introduction with Computer Simulations. Taylor & Francis Group, 2017.

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34

Buxton, Gavin. Alternative Energy Technologies: An Introduction with Computer Simulations. Taylor & Francis Group, 2017.

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35

Buxton, Gavin. Alternative Energy Technologies: An Introduction with Computer Simulations. Taylor & Francis Group, 2017.

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36

Alternative Energy Technologies: An Introduction with Computer Simulations. Taylor & Francis Group, 2014.

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37

Applications of Molecular Modeling to Challenges in Clean Energy. American Chemical Society, 2017.

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38

Buxton, Gavin. Alternative Energy Technologies. Taylor & Francis Group, 2015.

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39

Buxton, Gavin. Alternative Energy Technologies. Taylor & Francis Group, 2020.

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40

Nuclear Simulation: Proceedings of an International Symposium and Workshop, October 1987, Schliersee, West Germany. Springer, 2011.

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41

Vitale, Gianpaolo, and Maria Carmela Di Piazza. Photovoltaic Sources: Modeling and Emulation. Springer, 2012.

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42

Renewable Energy Devices and Systems with Simulations in MATLAB and ANSYS. Taylor & Francis Group, 2017.

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43

Renewable Energy Devices and Systems with Simulations in Matlab and Ansys. Taylor & Francis Group, 2020.

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44

Blaabjerg, Frede, and Dan M. Ionel. Renewable Energy Devices and Systems with Simulations in MATLAB® and ANSYS®. Taylor & Francis Group, 2017.

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45

Blaabjerg, Frede, and Dan M. Ionel. Renewable Energy Devices and Systems with Simulations in MATLAB® and ANSYS®. Taylor & Francis Group, 2017.

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46

Blaabjerg, Frede, and Dan M. Ionel. Renewable Energy Devices and Systems with Simulations in MATLAB® and ANSYS®. Taylor & Francis Group, 2017.

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47

Blaabjerg, Frede, and Dan M. Ionel. Renewable Energy Devices and Systems with Simulations in MATLAB® and ANSYS®. Taylor & Francis Group, 2017.

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48

Batic, Marko, Mladen Stanojevic, and Sanja Vranes. Renewable Energy Technologies - Simulation and Economic Evaluation. Springer, 2015.

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49

Renewable Energy Systems: Simulation with Simulink and SimPowerSystems. Taylor & Francis Group, 2016.

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50

III, Rush D. Robinett, and David G. Wilson. Nonlinear Power Flow Control Design. Springer, 2011.

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