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  • Cook, E. A.
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    Thermodynamic Data for Ionized Combustion Products.
    Aerospace Corp., El Segundo, CA
    Air Force Systems Command, Los Angeles, CA, TDR-469(5210-10)-8; SSD-TR-65-98, June 1965, 35 p.

  • Ritter von Stein, M.
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    Method for the Calculation of Temperatures of Flames. Of the Entropy and the Entropy of Combustion Products.
    Project F60ri-71, 1946, 44 p.

  • Lax, P. D.
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    Numerical Solution of the Equations of Fluid Dynamics.
    New York Univ., NY
    Lecture 1,
    Lectures on Combustion Theory. Mathematics and Computing Lectures given in a Seminar held during Spring semester 1977 at the Courant Institute. C00-3-77-153. September 1978, New York, Burstein, S. Z., Lax, P. D. and Sod, G. A., Editors, 1-60 p., 1978

  • Valko, L.; Kovarik, P.
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    On Thermal Dehydrochlorination of Model Compounds for Poly(Vinyl Chloride). Part 3. Activation Entropy and Frequency Factor Calculations.
    Institute of Physical Chemistry of the Slovak Technical Univ., Czechoslovakia
    Journal of Physical Chemistry, Vol. 80, No. 1, 19-25, January 1976

  • Krug, R. R.; Hunter, W. G.; Grieger, R. A.
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    Enthalpy-Entropy Compensation. Part 2. Separation of the Chemical From the Statistical Effect.
    Wisconsin Univ., Madison
    Journal of Physical Chemistry, Vol. 88, No. 21, 2341-2351, October 1976

  • Krug, R. R.; Hunter, W. G.; Grieger, R. A.
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    Enthalpy-Entropy Compensation. Part 1. Some Fundamental Statistical Problems Associated With the Analysis of Van't Hoff and Arrhenius Data.
    Wisconsin Univ., Madison
    Journal of Physical Chemistry, Vol. 80, No. 21, 2335-2341, October 1976

  • Chughtai, A. R.; Riter, J. R., Jr.
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    Yellow-Tip Limits of Premixed Hydrocarbon/Air Flames: Excess Entropy of Luminous Flame Carbon Vs Supersaturation of Carbon Vapor.
    Denver Univ., CO
    Paper 31,
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Fall Technical Meeting, 1976. November 18-19, 1976, Philadelphia, PA, 1-10 p., 1976

  • Li, X.; Tankin, R. S.
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    Prediction of Droplet Size and Velocity Distributions in Sprays Using Maximum Entropy Principle.
    Northwestern Univ., Evanston, IL
    Combustion Science and Technology, Vol. 68, No. 4-6, 147-155, 1989

  • Shafizadeh, F.; Susott, R. A.; McIntyre, C. R.
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    Solid-State Transition and Thermodynamic Properties of Crystalline Thiolevoglucosan.
    Montana Univ., Missoula
    Carbonydrate Research, Vol. 41, 351-354, 1975

  • Harris, C. J.
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    Entropy Correlation as Applied to Defining NOx Emission From Internal Combustion Engines.
    GE, Re-Entry and Environmental, Philadelphia, PA
    WSS/CI 75-22,
    Combustion Institute/Western States Section. October 20-31, 1975, Palo Alto, CA, 1-11 p., 1975