FireDOC Search

displaying 51 - 60 results in total 129

  • Kessel, S. L.; Bennett, J. G., Jr.; Rogers, C. E.
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    Corrosivity Test Methods for Polymeric Materials. Part 1. Radiant Furnace Test Method.
    Quantum Chemical Corp., Cincinnati, OH; GE Plastics, Pittsfield, MA; Union Carbide Chemicals and Plastics Co., Inc., Weston Canal, NJ
    Journal of Fire Sciences, Vol. 12, No. 2, 109-133, March/April 1994
    U.S. Army Communications-Electronics Command (CECOM). International Wire and Cable Symposium, 40th. November 18-21, 1991, St. Louis, MO, 348-356 p., ['1991', '1994']

  • Hirano, T.; Noreikis, S. E.; Waterman, T. E.
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    Measured Velocity and Temperature Profiles Near Flames Spreading Over a Thin Combustible Solid.
    IIT Research Inst., Chicago, IL
    Combustion and Flame, Vol. 23, 83-96, 1974

  • Sundermann, H.; Wagner, H.
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    Sensitive Direct Determination of Oxygen in Gases and Liquid Metals for Technical Applications at High Temperatures.
    Karlsruhe Nuclear Research Center, Germany
    KFK 819, September 1968, 40 p.

  • Miller, J. H.; Taylor, P. H.
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    Methyl Radical Concentrations and Production Rates in a Laminar Methane/Air Diffusion Flame.
    George Washington Univ., Washington, DC; National Bureau of Standards, Gaithersburg, MD
    Combustion Science and Technology, Vol. 52, 139-149, 1987

  • Fristrom, R. M.
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    Johns Hopkins Univ., Laurel, MD
    Flame Structure and Processes, Oxford University Press, NY, 521 p., 1995

  • Andersson, P.; Holmstedt, G.
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    Heat Sensing Manikin Test Probe.
    Lund Univ., Sweden
    Fire and Materials, Vol. 24, No. 4, 195-199, July/August 2000

  • Schulz, J.
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    Measurement of Magnitude and Direction of Hot Gas Flow in a Fire Compartment With a Five-Hole Probe.
    University of Canterbury, Christchurch, New Zealand; Building Research Association of New Zealand, Judgeford
    Fire Engineering Research Report 02/9, May 2002, 121 p.

  • Santoni, P. A.; Marcelli, T.; Leoni, E.
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    Measurement of Fluctuating Temperatures in a Continuous Flame Spreading Across a Fuel Bed Using a Double Thermocouple Probe.
    Universite de Corse, B.P. 52, 20250 Corte, Corse, France
    Combustion and Flame, Vol. 131, No. 1/2, 47-58, October 2002

  • Myhr, F. M.; Driscoll, J. F.
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    Laser Diagnostics to Identify Locations Where Nitric Oxide Is Produced Within Flames.
    Michigan Univ., Ann Arbor
    Combustion Science and Technology, Vol. 177, No. 9, 1813-1830, September 2005

  • Santamaria, A.; Mondragon, F.; Molina, A.; Marsh, N. D.; Eddings, E. G.; Sarofim, A. F.
    view article (7.4788165)

    FT-IR and 1H NMR Characterization of the Products of an Ethylene Inverse Diffusion Flame.
    Antioquia Univ., MedellĂ­n, Colombia; Sandia National Laboratories, Livermore, CA; Utah Univ., Salt Lake City
    Combustion and Flame, Vol. 146, No. 1/2, 52-62, July 2006