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1

Hynes, Mary Ellen. Probabilistic liquefaction analysis. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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2

Hynes, M. E. Probabilistic liquefaction analysis. Washington, D.C: U.S. Nuclear Regulatory Commission, 1990.

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3

The outlook for thermal coal. Washington, D.C., U.S.A: World Bank, 1985.

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4

Suwała, Wojciech. Modeling transition in the Polish coal industry. Cracow: Instytut Gospodarki Surowcami Mineralnymi i Energią PAN, 1998.

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5

Domestic coal distribution: An interregional programming model for the U.S. coal industry. Greenwich, Conn: JAI Press, 1985.

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6

Edwards, John C. Mathematical modeling of spontaneous heating of a coalbed. Pgh. [i.e. Pittsburgh] Pa: U.S. Dept. of the Interior, Bureau of Mines, 1990.

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7

Edwards, John C. Mathematical modeling of spontaneous heating of a coalbed. Washington, DC: Dept. of the Interior, 1990.

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8

Ponomarev, V. P. Vosproizvodstvo ėkonomicheskogo potent͡s︡iala dobychi ugli͡a︡ v sisteme TĖK Rossii: Metodologii͡a︡ perekhodnoĭ ėkonomiki. Moskva: In-t konʺi͡u︡nktury rynka ugli͡a︡, 1997.

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9

Finkelman, Robert B. Development and evaluation of deterministic models for predicting the weight of fouling deposits from coal combustion. Reston, VA: U.S. Geological Survey, 1989.

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10

Sams, James I. Simulation of streamflow and sediment transport in two surface-coal-mined basins in Fayette County, Pennsylvania. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1995.

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11

Kidd, Robert E. Application of the precipitation-runoff model in the Warrior coal field, Alabama. [Reston, Va.]: Dept. of the Interior, U.S. Geological Survey, 1987.

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12

Puente, Celso. Simulation of rainfall-runoff response in small coal-mined and in undisturbed watersheds in West Virginia. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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13

Puente, Celso. Simulation of rainfall-runoff response in small coal-mined and in undisturbed watersheds in West Virginia. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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14

Puente, Celso. Simulation of rainfall-runoff response in small coal-mined and in undisturbed watersheds in West Virginia. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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15

Puente, Celso. Simulation of rainfall-runoff response in small coal-mined and in undisturbed watersheds in West Virginia. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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16

Puente, Celso. Simulation of rainfall-runoff response in small coal-mined and in undisturbed watersheds in West Virginia. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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17

Atkins, John T. Calibration parameters used to simulate streamflow from application of the hydrologic simulation program-FORTRAN model (HSPF) to mountainous basins containing coal mines in West Virginia. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2005.

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18

Voskresenskiĭ, I. V. Issledovanie integrirui︠u︡shchikh transportno-tekhnologicheskikh moduleĭ v gorno-dobyvai︠u︡shcheĭ promyshlennosti: Monografii︠a︡. Novosibirsk: Izd-vo Sibirskogo otd-nii︠a︡ Rossiĭskoĭ akademii nauk, 2006.

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19

Nelson, H. E. A qualitative analysis of the inherent fire safety/fire risk in a coal mine. Gaithersburg, MD: U.S. Dept. of Commerce, National Bureau of Standards, 1986.

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20

Kabanov, A. I. Metody opredelenii͡a︡ tekhniko-ėkonomicheskikh kharakteristik gornoshakhtnogo oborudovanii͡a︡, pri kotorykh obespechivaetsi͡a︡ rat͡s︡ionalʹnoe ispolʹzovanie kapitalʹnykh zatrat. Donet͡s︡k: Nat͡s︡ionalʹnai͡a︡ akademii͡a︡ nauk Ukrainy, In-t ėkonomiki promyshl., 1995.

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21

Zhongguo mei kuang an quan sheng chan dong li ji zhi yan jiu = The Dynamic Mechanism of Coal Mine Work safety in China. Beijing: Ke xue chu ban she, 2013.

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22

A, Rybakova T., and Radchenko V. V, eds. Ėkonomicheskai͡a︡ ot͡s︡enka tekhnologicheskogo razvitii͡a︡ ugledobychi. Novosibirsk: Izd-vo "Nauka," Sibirskoe otd-nie, 1985.

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23

Edwards, John C. Model of coal dust explosion suppression by rock dust entrainment. PGH. [i.e. Pittsburgh] Pa: U.S. Dept. of the Interior, Bureau of Mines, 1988.

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24

Edwards, John C. Model of coal dust explosion suppression by rock dust entrainment. Washington, DC: U.S. Dept. of the Interior, 1988.

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25

Sprengel, Horst. Dynamics of thin liquid oxide films covering a solid fuel. Bielefeld: Fakultät für Physik, Universität Bielefeld, 1993.

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26

Giardino, Dennis A. Estimating the rate of coal combustion in a mine fire. [Washington, D.C.]: U.S. Department of Labor, Mine Safety and Health Administration, 1999.

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27

Giardino, Dennis A. Estimating the rate of coal combustion in a mine fire. [Pittsburgh, Pa.]: U.S. Dept. of Labor, Mine Safety and Health Administration, Pittsburgh Safety and Health Technology Center, 1999.

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28

Kramer, James M. The fracture mechanic approach to understanding supports in underground coal mines. [Pittsburgh, Pa.]: Dept. of Labor, Mine Safety and Health Administration, Pittsburgh Safety and Health Technology Center, 2001.

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29

Statistical physics of liquids at freezing and beyond. Cambridge: Cambridge University Press, 2011.

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30

Colvin, Thomas S. A computer aided mine planning model and energy efficiency ratios of four mining systems. Ann Arbor, Mich: University Microfilms International, 2003.

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31

International, Conference on the Verification of Numerical Procedures for the Analysis of Soil Liquefaction Problems (1993 Davis Calif ). Verification of numerical procedures for the analysis of soil liquefaction problems: Proceedings of the International Conference on the Verification of Numerical Proceedures for the Analysis of Soil Liquifaction Problems, Davis, California, USA, 17-20 October 1993. Rotterdam: A.A. Balkema, 1993.

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32

Winges, K. D. Continued analysis and derivation of a method to model pit retention. Research Triangle Park, N.C: U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 1986.

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33

author, Shao Liangshan, ed. Mei kuang wa si zai hai te zheng wa jue yu rong he yu ce. Beijing: Ke xue chu ban she, 2011.

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34

Dian xing mei kuang di xia shui yun dong ji wu ran shu zhi mo ni: Feflow ji Modflow ying yong. Beijing: Di zhi chu ban she, 2010.

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35

Marcio Luiz de Souza-Santos. Solid fuels combustion and gasification: Modeling, simulation, and equipment operation. New York: Marcel Dekker, 2004.

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36

Yenchek, M. R. Thermal modeling of portable power cables. Washington, D.C: U.S. Dept. of the Interior, Bureau of Mines, 1993.

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37

Twardowska, Irena. Wpływ odpadów górnictwa węgla kamiennego na środowisko wodne: Ocena zagrożenia, prognozowanie, zapobieganie. Wrocław: Zakład Narodowy im. Ossolińskich, 1988.

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38

Fuess, Scott M. The effects of government safety regulation in an equilibrium market model with compensating wage differentials. West Lafayette, Ind: Institute for Research in the Behavioral, Economic, and Management Sciences, Krannert Graduate School of Management, Purdue University, 1985.

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39

1952-, Pelissier Michael A., ed. Classics of elastic wave theory. Tulsa, Okla: SEG, 2007.

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40

Ko, Daekwun. A numerical study of solid fuel combustion in a moving bed. 1993.

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41

Draft guidelines for evaluating liquefaction resistance using shear wave velocity measurements and simplified procedures. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1999.

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42

Draft guidelines for evaluating liquefaction resistance using shear wave velocity measurements and simplified procedures. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1999.

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43

H, Stokoe Kenneth, Chung R. M, and National Institute of Standards and Technology (U.S.), eds. Draft guidelines for evaluating liquefaction resistance using shear wave velocity measurements and simplified procedures. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1999.

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44

Modeling fugitive dust impacts from surface coal mining operations, phase III: Evaluating model performance. Research Triangle Park, N.C: U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, Emissions, Monitoring, and Analysis Division, 1995.

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45

M, Kaganovich B., and Sibirskiĭ ėnergeticheskiĭ institut, eds. Tekhniko-ėkonomicheskie ot͡s︡enki plazmokhimicheskikh prot͡s︡essov pererabotki ugleĭ i uglevodorodov. Irkutsk: Akademii͡a︡ nauk SSSR, Sibirskoe otd-nie, Sibirskiĭ energeticheskiĭ in-t, 1989.

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46

Verification Numerical (V2) Procedure. Routledge, 1994.

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47

Marcio Luiz de Souza-Santos. Solid Fuels Combustion and Gasification: Modeling, Simulation, and Equipment Operation (Mechanical Engineering (Marcell Dekker)). CRC, 2004.

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48

Souza-Santos, Marcio Luiz de. Solid Fuels Combustion and Gasification: Modeling, Simulation, and Equipment Operations, Second Edition (Dekker Mechanical Engineering). 2nd ed. CRC, 2009.

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49

1929-, Gordon Robert B., ed. Toward a new Iron Age?: Quantitative modeling of resource exhaustion. Cambridge, Mass: Harvard University Press, 1987.

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50

Koopmans, Tjalling C., Robert B. Gordon, Brian J. Skinner, and William D. Nordhaus. Toward a New Iron Age?: Quantitative Modeling of Resource Exhaustion. Harvard University Press, 1987.

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