FireDOC Search

displaying 41 - 50 results in total 53

  • Okayama, Y.; Handa, T.; Fukaya, H.; Maruyama, T.; Endo, K.
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    Carbon Monoxide Sensor Element Made of SnO2-Sb203-Pt Semiconductor.

    1990
    2 p.

  • Handa, T.; Miyama, J.
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    Control System Detecting Fire Product. (Operating Performance of Two-Factor Detector on the Basis of Flow Characteristics of Fire Product in the First Stage of Fire).
    Research on Disaster, Vol. 8, 361-379, 1975

  • Handa, T.; Takahashi, A.
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    Combustion Behavior of Organic Materials and the Evaluation of Fire Retardant Effects by Small Electric Furnace Tests.
    Science University of Tokyo, Japan; Takasago Thermal Engineering Co. Ltd., Japan
    University of Edinburgh. Fire Safety of Combustible Materials International Symposium. October 1975, Edinburgh, Scotland, 287-295 p., 1975

  • Handa, T.
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    Examination of the Conditions for the Self Ignition of Wood. Part 2. Critical Conditions and Anisotropy Effect for the Self Ignition of Wood Spheres Compared With Computer Simulation.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 1, 9-16, 1971

  • Handa, T.
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    Characterization of the Mode ofCombustion and Smoke Evolution of Organic Materials in Fires. Part 2. Analysis of the Change in Particle-Size of Polystyrene Smoke Particles Due to Secondary Oxidation.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 2, 33-38, 1972

  • Handa, T.
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    Characterization of Factors in Estimating Fire Hazard by Furnace Test Based on Patterns in the Simulation of Fire for the Classification of Organic Interior Building Materials. Part 2. Checks on Factors Concerning the Surface Flame-Spread Rate and Smoke-Evolution of Organic Building Materials by Small Inclined-Type Test Furnace.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 1, 25-32, 1971

  • Handa, T.; Takahashi, A.
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    Analysis of the Surface Flame-Spread of Organic Building Materials. Part 1. Surface Flame on Plywood Materials in an Inclined Tunnel-Furnace as a Model of the Initial Cause of Fire.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 1, 55-62, 1971

  • Handa, T.; Okada, K.; Suzuki, H.; Ebihara, N.; Takahashi, A.; Nagashima, T.; Gotoda, M.; Saito, M.
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    Combustion Characteristics and the Smoking Behavior of Fire Retarded Materials.
    Science University of Tokyo, Japan; Building Research Institute, Tokyo, Japan; Japan Atomic Energy Research Inst., Osaka, Japan; Toshiba Research Development Center, Kanagawa, Japan; Adachi Plywood Co., Ltd., Tokyo, Japan
    Japanese Association of Fire Science and Engineering. Main Reports on Production Movement and Control of Smoke in Buildings. Occasional Report. No. 1. 1974, 37-71 p., 1974

  • Handa, T.; Hamada, T.; kaneko, K.
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    Characterization on the Behaviors of the Shallow Flows of Fire Products.
    Science University of Tokyo, Japan
    Japanese Association of Fire Science and Engineering. Main Reports on Production Movement and Control of Smoke in Buildings. Occasional Report. No. 1. 1974, 154-178 p., 1974

  • Handa, T.; Yamamura, T.; Kato, Y.; Saito, S.; Ishii, T.
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    Determination of Predominant Factors of Polynuclear Aromatic Hydrocarbon Emissions From Gasoline Engine Vehicles in Ordinary City Service.
    Air Pollution Research Institute, Japan
    Air Pollution Society Journal, Vol. 14, No. 11-12, 18-27, 1979