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Author:Watson, J.T.R.

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27 matching references were found.

Fenghour, A.; Wakeham, W.A.; Vesovic, V.; Watson, J.T.R.; Millat, J.; Vogel, E., The viscosity of ammonia, J. Phys. Chem. Ref. Data, 1995, 24, 1649-1667. [all data]

Vesovic, V.; Wakeham, W.A.; Olchowy, G.A.; Sengers, J.V.; Watson, J.T.R.; Millat, J., The transport properties of carbon dioxide, J. Phys. Chem. Ref. Data, 1990, 19, 763-808. [all data]

Johns, A.I.; Rashid, S.; Watson, J.T.R.; Clifford, A., Thermal conductivity of argon, nitrogen, carbon dioxide at elevated temperatures and pressures, J. Chem. Soc. Faraday Trans. I, 1986, 82, 2235-2246. [all data]

Scott, A.C.; Johns, A.I.; Watson, J.T.R.; Clifford, A.A., Thermal conductivity of carbon dioxide in the temperature range 300-348 K and pressures up to 25 MPa, J. Chem. Soc. Faraday Trans. I, 1983, 79, 733-740. [all data]

Sengers, J.V.; Watson, J.T.R.; Basu, R.S.; Kamgar-Parsi, B.; Hendricks, R.C., Representative Equations for the Thermal Conductivity of Water Substance, J. Phys. CHem. Ref. Data, 1984, 13, 893-933. [all data]

Johns, A.I.; Watson, J.T.R., Data collection and dissemination systems. The PPDS system in Transp. Prop. Fluids, Millat, J.; Dymond, J. H.; Nieto de Castro, C. A., Eds., Cambridge University Press: Cambridge, p 435-49, 1996. [all data]

Fenghour, A.; Wakeham, W.A.; Watson, J.T.R., Densities of (water + carbon dioxide) in the temperature range 415 K to 700 K and pressures up to 35 MPa, J. Chem. Thermodyn., 1996, 28, 433-446. [all data]

Fenghour, A.; Wakeham, W.A.; Watson, J.T.R., Densities of (water+methane) in the temperature range 430 K to 699 K and at pressures up to 30 MPa, J. Chem. Thermodyn., 1996, 28, 447-458. [all data]

Fenghour, A.; Wakeham, W.A.; Scott, A.C.; Watson, J.T.R., Amount-of-substance density of CH4 at temperatures from 322.5 K to 700 K and pressures up to 35 MPa, J. Chem. Thermodyn., 1995, 27, 213-18. [all data]

Fenghour, A.; Wakeham, W.A.; Watson, J.T.R., Amount-of-substance density of CO2 at temperatures from 329 K to 698 K and pressures up to 34 MPa, J. Chem. Thermodyn., 1995, 27, 219-23. [all data]

Fenghour, A.; Wakeham, W.A.; Vesovic, V.; Watson, J.T.R.; Millat, J., The viscosity of ammonia, J. Phys. Chem. Ref. Data, 1995, 24, 1649-67. [all data]

Fenghour, A.; Wakeham, W.A.; Scott, A.C.; Watson, J.T.R., The Density and Phase Behaviour of Mixtures of Water with Simple Gases in Phys. Chem. Aqueous Syst., Proc. Int. Conf. Prop. Water Steam 12th, White, et al. Eds: Begell House, New York, 1995. [all data]

Fenghour, A.; Wakeham, W.A.; Watson, J.T.R., Isochoric Density Measurements of Dense Gaseous Mixtures of CO2 and Water, High temp. - High Press., 1995, 26, 241-50. [all data]

Fenghour, A.; Wakeham, W.A.; Watson, J.T.R., Isochoric density measurements of dense gaseous mixtures of carbon dioxide and water, High Temp. - High Pressures, 1994, 26, 241-50. [all data]

Fenghour, A.; Wakeham, W.A.; Ferguson, D.; Scott, A.C.; Watson, J.T.R., Densities of (water + nitrogen) in the temperature range 533 K to 703 K and at pressures up to 31 MPa, J. Chem. Thermodyn., 1993, 25, 1151-9. [all data]

Fenghour, A.; Wakeham, W.A.; Ferguson, D.; Scott, A.C.; Watson, J.T.R., Automated Isochoric Apparatus for the Measurement of Density of Fluid Mixtures at Temperatures from 298.15 to 773.15 K, J. Chem. Thermodyn., 1993, 25, 831-47. [all data]

McLinden, M.O.; Haynes, W.M.; Watson, J.T.R.; Aicart, E., A Survey of Current Worlwide Research on Thermophysical Properties of Alternative Refrigerants, National Institute of Standards Technial Report, 1991. [all data]

Vesovic, V.; Wakeham, W.A.; Olchowy, G.A.; Sengers, J.V.; Watson, J.T.R.; Millat, J., The transport properties of carbon dioxide., J. Phys. Chem. Ref. Data, 1990, 19, 763. [all data]

Johns, A.I.; Rashid, S.; Watson, J.T.R.; Rowan, L.; Clifford, A.A., The Thermal Conductivity of Mixtures of Nitrogen and Carbon Dioxide at Elevated Temperatures and Pressures, Int J. Thermophys., 1988, 9, 3-19. [all data]

Johns, A.I.; Scott, A.C.; Watson, J.T.R.; Ferguson, D.; Clifford, A.A., Measurement of the thermal conductivity of gases by the transient hot-wire method, Philos. Trans. R. Soc. London, A, 1988, 325, 295. [all data]

Johns, A.I.; Scott, A.C.; Watson, J.T.R.; Ferguson, D.; Clifford, A.A., Measurement of Thermal Conductivity of Gases by the Transient Hot-Wire Method, Phil. Trans. R. Soc. London, 1988, A235, 295-365. [all data]

Sengers, J.V.; Watson, J.T.R., Improved international formulations for the viscosity and thermal conductivity of water substance, J. Phys. Chem. Ref. Data, 1986, 15, 1291. [all data]

Johns, A.I.; Rashid, S.; Watson, J.T.R.; Clifford, A.A., Thermal conductivity of argon, nitrogen, and carbon dioxide at elevated temperatures and pressures, J. Chem. Soc., Faraday Trans. 1, 1986, 82, 2235. [all data]

Johns, A.I.; Scott, A.C.; Watson, J.T.R., Evaluatiuon and Prediction of Thermophysical Properties with the NELPAC- ORTHO Package, High Temp. - High Press., 1984, 16, 7-20. [all data]

Scott, A.C.; Johns, A.I.; Watson, J.T.R.; Clifford, A.A., Thermal Conductivity of Carbon Dioxide in the Temperature Range 300-348 K and Pressures up to 25 MPa, J. Chem. Soc., Faraday Trans. 1, 1983, 79, 733-40. [all data]

Johns, A.I.; Scott, A.C.; Watson, J.T.R., Thermophysical Properties from NELPAC Software in Eight European Thermophys. Prop. Conference, Baden-Baden West Germany, 27 Sept. - 1 Oct, 1982. [all data]

Scott, A.C.; Johns, A.I.; Watson, J.T.R.; Clifford, A.A., Thermal Conductivity of Air in the Range 312 to 372 K and 0.1 to 24 MPa, Int. J. Thermophys., 1981, 1981, 2m 103-14. [all data]