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1

Krichene, Noureddine. An oil and gas model. [Washington, D.C.]: International Monetary Fund, African Dept., 2007.

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2

Spindizzies, gas-powered model racers. San Francisco, Calif: E-Z Spindizzy Collection, 1998.

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3

Srinivasan, Shankari. Gazprom's new upstream--downstream model. Cambridge, MA: CERA, 2007.

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4

Barns, D. W. Use of the Edmonds-Reilly model to model energy-related greenhouse gas emissions. Paris: Organisation for Economic Co-opertion and Development, 1992.

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5

Organisation for Economic Co-operation and Development. Dept. of Economics and Statistics. Use of the Edmonds-Reilly model to model energy-related greenhouse gas emissions. Paris: Organisation for Economic Co-operation and Development, 1992.

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6

Barns, D. W. Use of the Edmonds-Reilly model to model energy-related greenhouse gas emissions. Paris: OECD, 1992.

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7

Barns, David W. Use of the Edmonds-Reilly model to model energy-related greenhouse gas emissions. Paris: Organisation for Economic Co-operation and Development, 1992.

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8

Sudhoff, F. A. Shawnee flue gas desulfurization computer model users manual. Research Triangle Park, NC: U.S. Environmental Protection Agency, Industrial Environmental Research Laboratory, 1985.

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9

Stoppard, Michael. The new gas purchasing model: Exploring international partnerships. Cambridge, MA: CERA, 2008.

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10

Paxson, Daniel E. A general numerical model for wave rotor analysis. [Washington, DC: National Aeronautics and Space Administration, 1992.

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11

Einfeld, Wayne. Field-portable gas chromatograph: Electronic Sensor Technology model 4100. Las Vegas, Nev: National Exposure Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1998.

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12

GIS and land records: The ArcGIS parcel data model. Redlands, Calif: ESRI Press, 2004.

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13

Paxson, Daniel E. A numerical model for dynamic wave rotor analysis. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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14

Paxson, Daniel E. A numerical model for dynamic wave rotor analysis. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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15

Al-Khusaibi, T. M. S. Gas turbine models for power system analysis. Manchester: UMIST, 1993.

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16

Fattah, Kamel Ali. Nonideal models for gas permeation through membranes. Salford: University of Salford, 1990.

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17

Lehner, Markus, Robert Tichler, Horst Steinmüller, and Markus Koppe. Power-to-Gas: Technology and Business Models. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-03995-4.

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18

(Firm), Sierra Research. Evaluation of MOBILE vehicle emission model. Washington, D.C: U.S. Department of Transportation, Federal Highway Administration, 1994.

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19

Chernykh, V. V. Geologo-matematicheskie modeli neftegazodobychi. Moskva: Neftʹ i Gaz, 2008.

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20

Gottlieb, J. J. Numerical model for prediction of two-stage light-gas gun performance. [S.l.]: [s.n.], 1989.

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21

Rosendahl, Knut Einar. Simple model frameworks for explaining inefficiency of the clean development mechanism. [Washington, D.C: World Bank, 2009.

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22

Hawley, Suzanne L. Solar flare model atmospheres. [Washington, DC: National Aeronautics and Space Administration, 1993.

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23

Witzgall, Christoph. MARKET: A model for analyzing the production, transmission, and distribution of natural gas. Gaithersburg, MD: U.S. Dept. of Commerce, National Bureau of Standards, 1985.

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24

Witzgall, Christoph. MARKET: A model for analyzing the production, transmission, and distribution of natural gas. Gaithersburg, MD: U.S. Dept. of Commerce, National Bureau of Standards, 1985.

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25

Scott, J. A. A general model for the gain of gas avalanche counters. Chilton: Rutherford Appleton Laboratory, 2002.

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26

Mitchell, D. The potential of the PostScript graphics model for GIS applications. Edinburgh: Regional Research Laboratoryfor Scotland, 1990.

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27

Dotson, R. L. Lime spray dryer flue gas desulfurization computer model users manual. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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28

Dotson, R. L. Lime spray dryer flue gas desulfurization computer model users manual. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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29

Gas Industry Standards Board (U.S.). Contracts, standards, and models. Houston, Tex: Gas Industry Standards Board, 2002.

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30

Doyle, Joseph J. $2.00 gas!: Studying the effects of a gas tax moratorium. Cambridge, MA: National Bureau of Economic Research, 2006.

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31

Shmaliy, Yuriy S. GPS-based optimal FIR filtering of clock models. New York: Nova Science Publishers, 2009.

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32

Shmaliy, Yuriy S. GPS-based optimal FIR filtering of clock models. Hauppauge, NY, USA: Nova Science Publishers, 2009.

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33

Wolf-Gladrow, Dieter A. Lattice Gas Cellular Automata and Lattice Boltzmann Models. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/b72010.

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34

Chernykh, V. A. Matematicheskie modeli gorizontalʹnykh i naklonnykh gazovykh skvazhin. Moskva: Izd-vo "Neftʹ i Gaz", 2008.

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35

Universität zu Köln. Energiewirtschaftliches Institut, ed. The economics of natural gas infrastructure investments: Theory and model-based analysis for Europe. München: Oldenbourg Industrieverlag, 2012.

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36

Vance, Linda K. Assessing wetland condition with GIS: A landscape integrity model for Montana. Helena, Mont: Montana Natural Heritage Program, 2009.

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37

Tsui, Chak M. A computational model for gas-particle flows with distributed phase interfaces. [Toronto]: Dept. of Aerospace Science and Engineering, Unieristy of Toronto, 1997.

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38

Tsui, Chak M. A computational model for gas-particle flows with distributed phase interfaces. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1999.

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39

Fiig, Thomas. Ordering phenomena and non-equilibrium properties of lattice gas models. Roskilde: Risø National Laboratory, 1994.

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40

North Atlantic Treaty Organization. Advisory Group for Aerospace Research and Development. Mathematical models of gas turbine engines and their components. Neuilly sur Seine, France: AGARD, 1994.

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41

Nadziakiewicz, Jan. Teoretyczno-eksperymentalny model radiacyjnego przepływu ciepła w płomieniu gazowym. Gliwice: Dział Wydawnictw Politechniki Śląskiej, 1989.

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42

Patin, R. M. A one-dimensional simulation model for a two stage light gas gun with deformable piston. New York: AIAA, 1986.

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43

Hartley, T. T. Improved large perturbation propulsion models for control system design (1988-89) & Large perturbation models of high velocity propulsion systems (1989-1990) & Reduced order propulsion models for control system design (1990-1991). [Akron, Ohio]: University of Akron, 1991.

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44

Rangkuti, Zulkifli. Model ekonomi pemanfaatan gas ikutan: Studi kasus lapangan eksploitasi migas dalam rangka mendukung mekanisme pembangunan bersih. Bogor: IPB Press, 2012.

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45

Osiadacz, Andrzej J. Simulation and analysis of gas networks. London: Spon, 1987.

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46

Rauscher, Michael. The use of associated gas in a petroleum exporting country: An optimal control model. Konstanz: Fakultät für Wirtschaftswissenschaften und Statistik, Universität Konstanz, 1985.

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47

Karogodin, I︠U︡riĭ Nikolaevich. Sistemnai︠a︡ modelʹ stratigrafii neftegazonosnykh basseĭnov Evrazii. Novosibirsk: Akademicheskoe izd-vo "GEO", 2006.

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48

Stoppard, Michael. Gas and power convergence in Europe: Emerging business models. Cambridge, Mass: CERA, 2002.

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49

Nagnibeda, Ekaterina A. Transport properties of nonequilibrium gas flows: Models and applications. Noordwijk, The Netherlands: ESA Publications Division, 2005.

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50

Ang-Olson, Jeff, Louis Browning, Cristiano Facanha, Andrew Papson, Seth Hartley, and Ed Carr. Representing Freight in Air Quality and Greenhouse Gas Models. Washington, D.C.: National Academies Press, 2010. http://dx.doi.org/10.17226/14407.

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