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Author: | Blue |
18 matching references were found.
Blue; Gingerich, 16th Annual Conference on Mass Spectrometry and Allied Topics - Paper 129, Pittsburgh, 1968, 0. [all data]
Berkowitz, J.; Chupka, W.A.; Blue, G.D.; Margrave, J.L., Mass spectrometric study of the sublimation of lithium oxide, J. Phys. Chem., 1959, 63, 644. [all data]
Blue, G.D.; Green, J.W.; Bautista, R.G.; Margrave, J.L., The sublimation pressure of calcium(II) fluoride and the dissociation energy of calcium(I) fluoride, J. Phys. Chem., 1963, 67, 877. [all data]
Ehlert, T.C.; Blue, G.D.; Green, J.W.; Margrave, J.L., Mass spectrometric studies at high temperatures. IV. Dissociation energies of the alkaline earth monofluorides, J. Chem. Phys., 1964, 41, 2250. [all data]
Green, J.W.; Blue, G.D.; Ehlert, T.C.; Margrave, J.L., Mass spectrometric studies at high temperatures. III. The sublimation pressures of magnesium, strontium, and barium fluorides, J. Chem. Phys., 1964, 41, 2245. [all data]
Blue, G.D.; Green, J.W.; Ehlert, T.C.; Margrave, J.L., Dissociation energies of the alkaline earth monofluorides, Nature (London), 1963, 199, 804. [all data]
Gingerich, K.A.; Blue, G.D., Dissociation energy of gaseous UAu, J. Chem. Phys., 1967, 47, 5447. [all data]
Gingerich, K.A.; Blue, G.D., Dissociation energies of gaseous GaAg, Ga2, InAg, and In2 - Paper F2 in Proceedings of the 18th Annual Conference on Mass Spectrometry and Allied Topics, ASMS, San Francisco, CA, 1970, 0. [all data]
Gingerich, K.A.; Blue, G.D., Mass spectrometric investigation of the dissociation energy of the molecule AlAu and estimated bond energies of some diatomic intermetallic compounds with gold, J. Chem. Phys., 1973, 59, 185. [all data]
Giauque, W.F.; Blue, R.W., Hydrogen Sulfide. The Heat Capacity and Vapor Pressure of Solid and Liquid. The Heat of Vaporization. A Comparison of Thermodynamic and Spectroscopic Values of the Entropy, J. Am. Chem. Soc., 1936, 58, 5, 831-837, https://doi.org/10.1021/ja01296a045 . [all data]
Blue, R.W.; Giauque, W.F., The Heat Capacity and Vapor Pressure of Solid and Liquid Nitrous Oxide. The Entropy from its Band Spectrum, J. Am. Chem. Soc., 1935, 57, 6, 991-997, https://doi.org/10.1021/ja01309a008 . [all data]
Dieke, G.H.; Blue, R.W., A1Π → 1Δ band of NH and the corresponding ND band, Phys. Rev., 1934, 45, 395. [all data]
Dieke, G.H.; Blue, R.W., The Fulcher bands of HD and D2, Phys. Rev., 1935, 47, 261. [all data]
Blue, R.W., The Librational Heat Capacity of Ice and of Heavy Water, J. Chem. Phys., 1954, 22, 280. [all data]
Blue, R.W.; Hicks, J.F.G., Comparison of platinum - rhodium resistance thermometers with the helium gas thermometer from 11 to 300 k an improved cryostat low temperature studies, no 2, J. Am. Chem. Soc., 1937, 59, 1962. [all data]
Giauque, W.F.; Blue, R.W., Hydrogen Sulfide. The Heat Capacity and Vapor Pressure of Solid and Liquid. The HEat of Vaporization. A Comparison of Thermooodynamic and Spectroscopic Values of the Entropy, J. Am. Chem. Soc., 1936, 58, 831. [all data]
Blue, R.W.; Giauque, W.F., The heat capacity and vapor pressure of solid and liquid nitrous oxide the entropy from its band spectrum, J. Am. Chem. Soc., 1935, 57, 991. [all data]
Giauque, W.F.; Blue, R.W.; Overstreet, Phys. Rev., 1931, 38, 196. [all data]