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Author:Ross, M.

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19 matching references were found.

Millat, J.; Mustafa, M.; Ross, M.; Wakeham, W.A.; Zalaf, M., The Thermal Conductivity of Argon, Carbon Dioxide and Nitrous Oxide, Physica A, 1987, 145, 3, 461-497, https://doi.org/10.1016/0378-4371(87)90005-7 . [all data]

Millat, J.; Ross, M.; Wakeham, W.A.; Zalaf, M., The Thermal Conductivity of Neon, Methane and Tetrafluoromethane, Physica A:, 1988, 148, 1-2, 124-152, https://doi.org/10.1016/0378-4371(88)90138-0 . [all data]

Nellis, W.J.; Mitchell, A.C.; Ree, F.H.; Ross, M.; Holmes, N.C.; Trainor, R.J.; Erskine, D.J., Equation of state of shock-compressed liquids: carbon dioxide and airr, J. Chem. Phys., 1991, 95, 5268-72. [all data]

Ross, M.; Trusler, J.P.M.; Wakeham, W.A.; Zalaf, M., Thermal conductivity of R134a over the temperature range 240 to 373 K, Sci. Tech. Froid, 1990, No. 1, 89-94. [all data]

Ross, M.; Hildebrand, J.H., Diffusion of Hydrogen, Deuterium, Nitrogen, Argon, Methane, and Carbon Tetrafluoride in Carbon Tetrachloride, J. Chem. Phys., 1964, 40, 2397-2399. [all data]

Ross, M.; Hildebrand, J.H., Energy volume relations of octamethylcyclotetrasiloxane and its mixtures with carbon tetrachloride, J. Phys. Chem., 1963, 67, 1301-3. [all data]

Millat, J.; Ross, M.; Wakeham, W.A.; Zalaf, M., The thermal conductivity of neon, methane and tetrafluoromethane, Physica A: (Amsterdam), 1988, 148, 124-52. [all data]

Millat, J.; Ross, M.; Wakeham, W.A.; Zalaf, M., The thermal conductivity of ethylene and ethane, Int. J. Thermophys., 1988, 9, 481. [all data]

Mustafa, M.; Ross, M.; Trengove, R.D.; Wakeham, W.A.; Zalaf, M., Absolute measurement of the thermal conductivity of helium and hydrogen, Physica A: (Amsterdam), 1987, 141A, 233. [all data]

Millat, J.; Mustafa, M.; Ross, M.; Wakeham, W.A.; Zalaf, M., Physica A: (Amsterdam), 1987, 145, 461. [all data]

Ross, M.; Mao, H.K.; Bell, P.M.; Xu, J.A., The equation of state of dense argon: a comparison of shock and static studies, J. Chem. Phys., 1986, 85, 1028. [all data]

Ross, M.; Young, D.A., Helium at high density, Phys. Lett. A, 1986, 118, 463. [all data]

Maitland, G.C.; Mustafa, M.; Ross, M.; Trengove, R.D.; Wakeham, W.A.; Zalaf, M., Transient hot-wire measurements of the thermal conductivity of gases at elevated temperatures, Int. J. Thermophys., 1986, 7, 245. [all data]

Diatschenko, V.; Chu, C.W.; Liebenberg, D.H.; Young, D.A.; Ross, M.; Mills, R.L., Melting curves of molecular hydrogen and molecular deuterium under high pressures between 20 and 373 K, Phys. Rev. B: Condens. Matter, 1985, 32, 381. [all data]

Ross, M.J.; Toczylkin. L.S., Hydrate dissociation pressures for methane or ethane in the presence of aqueous solutions of triethylene glycol, J. Chem. Eng. Data, 1992, 37, 488-91. [all data]

Ross, M.J.; Vesovic, V.; Wakeham, W.A., Alternative expressions for the thermal conductivity of dilute gas mixtures, Physica A: (Amsterdam), 1992, 183, 519-36. [all data]

Millat, J.; Ross, M.J.; Wakeham, W.A., Thermal conductivity of nitrogen in the temperature range 177 to 27 K, Physica A: (Amsterdam), 1989, 159, 28. [all data]

Meot-Ner (Mautner), M.; Ross, M.M.; Campana, J.E., Stable Hydrogen - Bonded Isomers of Covalent Ions, J. Am. Chem. Soc., 1985, 107, 4835. [all data]

King, F.L.; Ross, M.M., Abundance distributions and dissociations of sputtered aluminum, gallium, and indium cluster ions, Chem. Phys. Lett., 1989, 164, 131-136. [all data]