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Cup-Burner Extinguishing Concentration Correlation With C1-C8 Class B Fuel Properties.
Kidde-Fenwal Inc., Ashland, MA
Halon Options Technical Working Conference. Proceedings. HOTWC 1998. Sponsored by: University of New Mexico, 3M Co., Fire Suppression Systems Assoc., Great Lakes Chemical Corp., Halon Alternative Research Corp., Hughes Associates, Inc., Kidde International, Modular Protection, Inc., National Association of Fire Equipment Distributors, Inc., Next Generation Fire Suppression Technology Program. May 12-14, 1998,
Albuquerque, NM,
70-79 p.,
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Jones, J. C.
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Direct Evidence for the Low Reactivity Towards Oxygen of Elemental Carbon.
Kings College, Aberdeen, Scotland
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Ohtani, H.; Washimi, A.; Uehara, Y.
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Experimental Study of Peak Concentrations of Halon Alternatives at Elevated Temperature.
Yokohama National Univ., Japan
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Mitchell, R. J.
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Danger as Lightweight Fibres Get Under the Skin.
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Duthinh, D.; Starnes, M. A.
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Strength and Ductility of Concrete Beams Reinforced With Carbon FRP and Steel.
National Institute of Standards and Technology, Gaithersburg, MD
NISTIR 6830,
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Fortsch, D.; Schnell, U.; Hein, K. R. G.; Essenhigh, R. H.
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Mass Transfer Coefficient for the Combustion of Pulverized Carbon Particles.
University of Stuttgart, Germany; Ohio State University, Columbus
Combustion and Flame,
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Duthinh, D.; Starnes, M. A.
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Strengthening of Reinforced Concrete Beams with Carbon FRP.
National Institute of Standards and Technology, Gaithersburg, MD
Composites in Constructions. 2001,
Swets and Zeitlinger, Lisse,
2001
Blake, T. R.
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Low Reynolds Number Combustion of a Spherical Carbon Particle.
University of Massachusetts, Amherst
Combustion and Flame,
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Gremyachkin, V. M.; Fortsch, D.; Schnell, U.; Hein, K. R. G.
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Model of the Combustion of a Porous Carbon Particle in Oxygen.
Institute for Problems in Mechanics RAS, Ave. Vernadskogo 101/1, Moscow 117526, Russia; Institute of Process Engineering and Power Plant Technology (IVD), University of Stuttgart, Pfaffenwaldring 23, D-70550 Stuttgart, Germany
Combustion and Flame,
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Kashiwagi, T.; Du, F.; Winey, K. I.; Groth, K. M.; Shields, J. R.; Bellayer, S. P.; Kim, H.; Douglas, J. F.
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Flammability Properties of Polymer Nanocomposites With Single-Walled Carbon Nanotubes: Effects of Nanotube Dispersion and Concentration.
National Institute of Standards and Technology, Gaithersburg, MD; Pennsylvania Univ., Philadelphia
Polymer,
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January 2005