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Author: | Leaist |
12 matching references were found.
Leaist, D.; Hui, L., Intradiffusion coefficients and integral mutual diffusion coefficients of dilute associating solutes are identical: caffeine in water, J. Phys. Chem., 1990, 94, 8741-4. [all data]
Leaist, D.G.; Murray, J.J.; Post, M.L.; Davidson, D.W., Enthalpies of decomposition and heat capacities of ethylene oxide and tetrahydrofuran hydrates, J. Phys Chem., 1982, 86, 4175-4178. [all data]
Hao, L.; Leaist, D.G., Binary Mutual Diffusion Coefficients of Aqueous Alcohols. Methanol to 1- Heptanol, J. Chem. Eng. Data, 1996, 41, 210-13. [all data]
Hao, L.; Leaist, D.G., Interdiffusion without a common ion in aqueous NaCl-MgSO4 and LiCl-NaOH mixed electrolytes, J. Solution Chem., 1995, 24, 523-35. [all data]
Leaist, D.G.; Hao, L., Simultaneous Measurement of Mutual Diffusion and Intradiffusion by Taylor Dispersion, J. Phys. Chem., 1994, 98, 4702-6. [all data]
Leaist, D.G., Diffusion with molecular association in chloroform + triethylamine and chloroform + dioxane mixtures, J. Solution Chem., 1992, 21, 1035-50. [all data]
Leaist, D.G.; Deng, Z., Doubling of the apparent rates of diffusion of aqueous propanols near compositions of maximum refractive index, J. Phys. Chem., 1992, 96, 2016-18. [all data]
Leaist, D.G., Coupled tracer diffusion coefficients of solubilizates in ionic micelle solutions from liquid chromatography, J. Solution Chem., 1991, 20, 2, 175. [all data]
Leaist, D.G., Boltzmann transformation of taylor dispersion profiles to determine concen tration-dependent diffusion coefficients. aqueous cetylpyridinium chloride near the critical micelle concentration, Ber. Bunsen-Ges. Phys. Chem., 1991, 95, 2, 113. [all data]
Leaist, D.G., Determination of ternary diffusion coefficients by the Taylor dispersion method, J. Phys. Chem., 1990, 94, 5180-3. [all data]
Leaist, D.G., Diffusion Coefficient of Aqueous Sulfur Dioxide at 25 C, J. Chem. Eng. Data, 1984, 29, 281-282. [all data]
Leaist, D.G.; Murray, J.J.; Post, M.L.; Davidson, D.W., Enthalpies of decomposition and heat capacities of ethylene oxide and tetrahydrofuran hydrates, J. Phys. Chem., 1982, 86, 4175. [all data]