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Characterizing of Design Fires for Clothing Stores. (POSBER ABSTRACTS)
Carleton Univ., Ontario, Canada
POSTER ABSTRACTS,
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Intl. Assoc. for Fire Safety Science, Boston, MA,
Beijing, China,
Gottuk, D. T.; Lattimer, B. Y., Editors,
1658-1658 p.,
2005
Troth, N.
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Tubbs, J. S.
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Smoke Management in the 2006 IBC.
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June 2006
Shen, T.S.
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Will the Second Cable Tray Be Ignited In a Nuclear Power Plant?
Central Police Univ., Taoyuan, Taiwan 333
Journal of Fire Sciences,
Vol. 24,
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July 2006
Natori, A.; Kakae, N.; Kitahori, J.; Tsuchihashi, T.; Abe, T.; Nagaoka, T.; Ohmiya, Y.; Harada, K.
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Development of a Simple Estimation Method of Heat Release Rate Based on Classification of Common Combustibles Into Category Groups.
Kyoto Univ., Japan; Tokyo University of Science, Japan; General Building Research Corporation of Japan; Sanyu Civil Engineering, Japan; Takenaka Corp., Japan
Fire Science and Technology,
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31-54,
2006
Chow, W. K.; Tsui, F. S. C.
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Designing Performance-Based Sprinkler Systems: East vs. West.
Hong Kong Polytechnic Univ.; Arup Fire, Ove Arup and Partners Hong Kong Limited
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Benichou, N.
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Use of Relative Risk-Based Assessment to Identify Cost-Effective Fire Safety Design Options for a Large Office Building.
National Research Council of Canada, Ottawa, Ontario
Fire Science and Technology,
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87-104,
2006
Takeyoshi, T.; Jun-ichi, Y.
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Consideration on Determination of Design Fire Based on Fire Risk Concept.
Kyoto Univ., Japan; Obayashi Corp., Japan
Fire Science and Technology,
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2006
Sekizawa, A.; Notake, H.
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Performance Requirement for Building Fire Safety From the Viewpoint of Firefighting and Rescue Activity.
Tokyo Univ., Japan; Shimizu Corp., Japan
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Domnitch, C. L.; Hopkins, D.
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Performance Based Fire Protection: A Place in History.
Hughes Associates, Inc., Baltimore, MD
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