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References

[1] Wermiel, S. E., The Fireproof Building: Technology and Public Safety in the Nineteenth-Century American City, The Johns Hopkins University Press, Baltimore, MD, 2000.

[2] Bentz, D. P., Prasad, K., and Yang, J., "Towards a Methodology for the Characterization of Fire Protection Materials with Respect to Thermal Performance Models," accepted by Fire and Materials, 2005.

[3] ASTM Annual Book of Standards, American Society for Testing and Materials, West Conshohocken, PA, 2004.

[4] Wickström, U., "Temperature Analysis of Heavily-insulated Steel Structures Exposed to Fire," Fire Safety Journal, 1985, pp. 281-285.

[5] Gustafsson, S. E., "Transient Plane Source Techniques for Thermal Conductivity and Thermal Diffusivity Measurements of Solid Materials," Review of Scientific Instruments, Vol. 62, No. 3, 1991, pp. 797-804.

[6] Log, T. and Gustafsson, S. E., "Transient Plane Source (TPS) Technique for Measuring Thermal Transport Properties of Building Materials," Fire and Materials, Vol. 19, 1995, pp. 43-49.

[7] Bentz, D. P., Flynn, D. R., Kim, J. H., and Zarr, R. R., "A Slug Calorimeter for Evaluating the Thermal Performance of Fire Resistive Materials," accepted by Fire and Materials, 2005.

[8] Fitch, A. L., "A New Thermal Conductivity Apparatus," American Physics Teacher, Vol. 3, 1935, pp. 135-136.

[9] Bogaard, R. H., Desai, P. D., Li, H. H., and Ho, C. Y., "Thermophysical Properties of Stainless Steels," Thermochimica Acta, Vol. 218, 1993, pp. 373-393.
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