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Harada, M., 2000. Practical Estimation Of Deflection And Ultimate Strength Of Fire Exposed Composite Slab. Fire Safety Science 6: 843-854. doi:10.3801/IAFSS.FSS.6-843
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Morita, T., Nishida, A., Yarnazaki, N., Schneider, U. and Diederichs, U., 2000. An Experimental Study On Spalling Of High Strength Concrete Elements Under Fire Attack. Fire Safety Science 6: 855-866. doi:10.3801/IAFSS.FSS.6-855
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Ishihara, T., Wakamatsu, Takao, Harada, K. and Yusa, S., 2000. An Extrapolation Method Of The Steel Temperature Rise For Engineering Fire Resistance Design. Fire Safety Science 6: 867-878. doi:10.3801/IAFSS.FSS.6-867
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Myllyrnaki, J. and Baroudi, D., 2000. Simple Method To Predict Fire Resistance Of Composite Columns. Fire Safety Science 6: 879-890. doi:10.3801/IAFSS.FSS.6-879
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Fontana, M. and Frangi, A., 2000. Fire Behaviour Of Timber-concrete Composite Slabs. Fire Safety Science 6: 891-902. doi:10.3801/IAFSS.FSS.6-891
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Dhima, D., Joyeux, D. and Kruppa, J., 2000. Fire Safety Engineering - Numerical Assessment Of The Mechanical Behaviour Of A Steel Structure Exposed To Natural Fire. Fire Safety Science 6: 903-914. doi:10.3801/IAFSS.FSS.6-903
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Kruppa, J., 2000. Characterization Of Fire Protection Materials Of Steel Elements. Sensitivity Study Of A Simplified Assessment Method.. Fire Safety Science 6: 915-926. doi:10.3801/IAFSS.FSS.6-915
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Franssen, J.M., 2000. Improvement Of The Parametric Fire Of Eurocode 1 Based On Experimental Test Results. Fire Safety Science 6: 927-938. doi:10.3801/IAFSS.FSS.6-927
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