FireDOC Search

displaying 501 - 510 results in total 585

  • George, C. W.
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    Retardant Salt Concentration Measured in the Field.
    Intermountain Forest and Range Experiment Station, Ogden, UT
    USDA Research Note INT-138, June 1971, 14 p.

  • Tewarson, A.
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    Effectiveness of Fire Retardants in Reducing/Eliminating Non-Thermal Damage.
    Factory Mutual Research Corp., Norwood, MA
    Electronic Information Age and Its Demands on Fire Safety. Fall Conference. Proceedings. October 29-November 1, 1995, Fire Retardant Chemicals Assoc., Lancaster, PA, Rancho Mirage, CA, 79-102 p., 1995

  • Cline, J.
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    Rehab Units at Work.
    New York City Fire Dept., NY
    Fire Engineering, Vol. 150, No. 2, 71-72, February 1997

  • Grace, T.
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    Improving the Waking Effectiveness of Fire Alarms in Residential Areas.
    University of Canterbury, Christchurch, New Zealand
    Fire Engineering Research Report 97/3, May 1997, 104 p.

  • Burry, P. E.
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    General Requirements for Fire Detection Systems With Particular Reference to the Reduction of Fire Losses.
    Fire Research Station, Borehamwood, England
    Paper 2,
    Fire Research Station. Automatic Fire Detection. Symposium No. 6. March 8-10, 1972, London, England, 12-18 p., 1972

  • Takata, A.
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    Mathematical Modeling of Fire Defenses. Part 2. Final Technical Report. May 1969-February 1970.
    IIT Research Inst., Chicago, IL
    Office of Civil Defense, Washington, DC, Project J6179; OCD Work Unit 2526A; Final Technical Report, March 1970, 72 p.

  • Clark, R. L.
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    Cooling Effectiveness of Three Fire Fighting Agents.
    Naval Weapons Evaluation Facility, Albuquerque, NM
    NAVWEPS Report 8946, June 30, 1966, 36 p.

  • Withington, D.
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    How More Effective Sirens Can Cut Journey Times Noticeably.
    Fire, Vol. 91, No. 1104, 27-29, June 1997

  • Coleman, J. F.
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    Accountability and the Incident Management System.
    Toledo Department of Fire and Rescue Operations, OH
    Fire Engineering, Vol. 150, No. 12, 56-59, December 1997

  • Back, G. G.; Beyler, C. L.
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    Quasi-Steady State Model for Predicting Fire Suppression in Spaces Protected by Water Mist Systems.
    Hughes Associates, Inc., Baltimore, MD
    Fire Research and Engineering, Second (2nd) International Conference. (ICFRE2). Proceedings. ABSTRACTS ONLY. National Institute of Standards and Technology and Society of Fire Protection Engineers. August 10-15, 1997, Gaithersburg, MD, Slaughter, K. C., Editors, 59-59 p., 1997