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Arson Detection Model.
Metropolitan Dade County, FL
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Hara, F.
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Computer Simulation Model for Civil Evacuation From Large-Scale Fires.
Science Univ. of Tokyo, Japan
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Emmons, H. W.
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Math Model Fire Program: CFC V.
Harvard Univ., Cambridge, MA
Naval Research Laboratory and Naval Sea Systems Command. Workshop on Fire Modeling and Scaling. December 2-3, 1981,
Naval Research Lab., Washington, DC,
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Carhart, H.; Williams, F.; Childs, E.; Quintiere, J. G., Editors,
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Ogle, R. A.
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Parametric Sensitivity of a Mathematical Model for Closed Bomb Dust Explosions.
Honeywell Inc., Brooklyn Park, MN
Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. 20th Fall Technical Meeting. and National Bureau of Standards/Center for Fire Research. Annual Conference on Fire Research. Combined Technical Meetings. Abstracts. November 2-5, 1987.,
Gaithersburg, MD,
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Tomeczek, J.; Weber, R.
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Radiation and Burner Geometry in the Mathematical Modeling of a Flat Gaseous Flame.
Silesian Technical Univ., Poland
Combustion and Flame,
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May 1981
Varhegyi, G.
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Basic Problem in Mathematical Modelling in Pyrolysis: The Number of the Unknown Parameters.
Hungarian Academy of Sciences, Budapest, Hungary
Journal of Analytical and Applied Pyrolysis,
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Kim, D. K.; Seul, S. D.; Sohn, J. E.
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Optimum Reaction Kinetics Model of Heat-Resistant and Flame-Retardant Polymethyl Methacrylate.
Dong-A Univ., South Korea
Journal of the Korea Institute of Rubber Industry,
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1987
Jaluria, Y.; Kapoor, K.
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Importance of Wall Flows at the Early Stages of Fire Growth in the Mathematical Modeling of Enclosure Fires.
Rutgers Univ., New Brunswick, NJ
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1988
National Institute of Standards and Technology,,
Muramatsu, M.; Umemura, S.; Okada, T.
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Mathematical Model of Evaporation--Pyrolysis Processes Inside a Naturally Smoldering Cigarette.
Japan Tobacco and Salt Public Corp., Kanagawa, Japan
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1979
Edwards, J. C.; Ford, K. M.
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Model of Coal Dust Explosion Suppression by Rock Dust Entrainment.
Bureau of Mines, Pittsburgh, PA
RI 9206,
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