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18 matching references were found.
Moore, G.E.; Parks, G.S., New thermodynamic data for the cyclohexane-methylcyclopentane isomerization, J. Am. Chem. Soc., 1939, 61, 2561-2562. [all data]
Parks, G.S.; Moore, G.E., The heat of combustion of isopropanol, J. Chem. Phys., 1939, 7, 1066-1067. [all data]
Moore, G.E.; Renquist, M.L.; Parks, G.S., Thermal data on organic compounds. XX. Modern combustion data for two methylnonanes, methyl ethyl ketone, thiophene and six cycloparaffins, J. Am. Chem. Soc., 1940, 62, 1505-1507. [all data]
Parks, G.S.; Moore, G.E., Vapor pressure and other thermodynamic dta for n-hexadecane and n-dodecylcyclohexane near room temperature, J. Chem. Phys., 1949, 17, 1151-11. [all data]
Parks, G.S.; Moore, G.E.; Renquist, M.L.; Naylor, B.F.; McClaine, L.A.; Fujii, P.S.; Hatton, J.A., Thermal data on organic compounds. XXV. Some heat capacity, entropy and free energy data for nine hydrocarbons of high molecular weight, J. Am. Chem. Soc., 1949, 71, 3386-3389. [all data]
Parks, G.S.; Kennedy, W.D.; Gates, R.R.; Mosley, J.R.; Moore, G.E.; Renquist, M.L., Thermal data on organic compounds. XXVI. Some heat capacity, entropy and free energy data for seven compounds containing oxygen., Not In System, 1956, 78, 56-59. [all data]
Parks, G.S.; West, T.J.; Moore, G.E., Thermal data on organic compounds. XXI. Some heat capacity, entropy and free energy data for the four methylnonanes, J. Am. Chem. Soc., 1941, 63, 1133-1135. [all data]
Parks, G.S.; Moore, G.E.; Renquist, M.L.; Naylor, B.F.; McClaine, L.A.; Fujii, P.S.; Hatton, J.A., Thermal Data on Organic Compounds. XXV. Some Heat Capacity, Entropy and Free Energy Data for Nine Hydrocarbons of High Molecular Weight, J. Am. Chem. Soc., 1949, 71, 10, 3386, https://doi.org/10.1021/ja01178a034 . [all data]
Jones, L.H.; Badger, R.M.; Moore, G.E., The Infrared Spectrum and the Structure of Gaseous Nitrous Acid, J. Chem. Phys., 1951, 19, 12, 1599, https://doi.org/10.1063/1.1748129 . [all data]
Benedict, W.S.; Herman, R.; Moore, G.E.; Silverman, S., The strengths, widths, and shapes of infrared lines. I. General considerations, Can. J. Phys., 1956, 34, 830. [all data]
Benedict, W.S.; Herman, R.; Moore, G.E.; Silverman, S., The strengths, widths, and shapes of infrared lines. II. The HCl fundamental, Can. J. Phys., 1956, 34, 850. [all data]
Benedict, W.S.; Herman, R.; Moore, G.E., Infrared line and band strengths and dipole moment function in HCl and DCl, J. Chem. Phys., 1957, 26, 1671. [all data]
Parks, G.S.; Kennedy, W.D.; Gates, R.R.; Mosley, J.R.; Moore, G.E.; Renquist, M.L., Thermal Data on Organic Compounds XXVI. Some Heat Capacity, Entropy and Free Energy Data for Seven Compounds Containing Oxygen, J. Am. Chem. Soc., 1956, 78, 56-9. [all data]
Moore, G.E., J. Opt. Soc. Am., 1953, 43, 1045. [all data]
Parks, G.S.; West, T.J.; Moore, G.E., Thermal data on organic compounds. XXI. Some heat capacity, entropy and free energy data form the four methylnonanes., J. Am. Chem. Soc., 1941, 63, 1133. [all data]
Moore, G.E.; Renquist, M.L.; Parks, G.S., J. Am. Chem. Soc., 1940, 62, 1505. [all data]
Moore, G.E.; Parks, G.S., New Thermodynamic Data for the Cyclohexane-Methylcyclopentane Isomerization, J. Am. Chem. Soc., 1939, 61, 2561. [all data]
Parks, G.S.; Moore, G.E., THe Heat of Combustion of Isopropanol, J. Chem. Phys., 1939, 7, 1066. [all data]
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