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Modeling of Coated and Uncoated Concrete Walls Exposed to Fires.
Kansas State Univ., Manhattan
American Institute of Aeronautics and Astronautics/American Society of Mechanical Engineers (AIAA/ASME). Heat and Mass Transfer in Fires. June 18-20, 1990,
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Ahmed, G. N.; Dietenberger, M. A.; Jones, W. W.
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Calculating Flame Spread on Horizontal and Vertical Surfaces.
National Institute of Standards and Technology, Gaithersburg, MD
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Hurst, J. P.; Ahmed, G. N.
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Modeling the Thermal Response of Gypsum Wallboard and Stud Assemblies Subjected to Standard Fire Testing.
Portland Cement Assoc., San Ramon, CA
National Institute of Standards and Technology (NIST) and Society of Fire Protection Engineers (SFPE). International Conference on Fire Research and Engineering (ICFRE). Proceedings. September 10-15, 1995,
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Ahmed, G. N.; Hurst, J. P.
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Modeling the Thermal Behavior of Concrete Slabs Subjected to the ASTM E119 Standard Fire Condition.
Portland Cement Assoc., Skokie, IL
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Abdel-Rahman, A. K.; Ahmed, G. N.
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Computational Heat and Mass Transport in Concrete Walls Exposed to Fire.
Portland Cement Assoc., Skokie, IL
Numerical Heat Transfer,
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Ahmed, G. N.; Hurst, J. P.
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Coupled Heat and Mass Transport Phenomena in Siliceous Aggregate Concrete Slabs Subjected to Fire.
Portland Cement Assoc., Skokie, IL
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Ahmed, G. N.; Hurst, J. P.
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Analytical Approach for Investigating the Causes of Spalling of High-Strength Concrete at Elevated Temperatures.
Portland Cement Assoc., Skokie, IL
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