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Ward, Charles A. - Department of Mechanical and Industrial Engineering, University of Toronto
Thermocapillary transport of energy during water evaporation V. K. Badam,2
Apparatus for investigation of evaporation at free liquidvapour interfaces
Contact angle hysteresis generated by the residual gravitational field of the Space Shuttle
Effect of Contact Line Curvature on Solid-Fluid Surface Tensions Without Line Tension C. A. Ward* and Jiyu Wu
Surface thermal capacity and its effects on the boundary conditions at fluid-fluid interfaces Kausik S. Das and C. A. Ward*
Surface excess properties from energy transport measurements during water evaporation Fei Duan and C. A. Ward*
Droplet stability in a finite system: Consideration of the solidvapor A. J. H. McGaugheya)
Interfacial conditions during evaporation or condensation of water C. A. Ward* and D. Stanga
Material properties controlling adsorption kinetics and temperature programmed desorption spectra
Surface-thermal capacity of D2O from measurements made during steady-state evaporation Fei Duan and C. A. Ward
J. Non-Equilib. Thermodyn. 2002 Vol. 27 pp. 289303
Effect of Adsorption on the Surface Tensions of Solid-Fluid Interfaces C. A. Ward* and Jiyu Wu
Temperature discontinuity at the surface of an evaporating droplet A. J. H. McGaugheya)
Effect of pressure on the rate of evaporation from capillaries: statistical rate theory approach
Turbulent transition of thermocapillary flow induced by water evaporation C. A. Ward* and Fei Duan
Recent advances on thermocapillary flows and interfacial conditions during the evaporation of liquids