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A versatile optical diffusiometer including a large optical bench of new design
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2O. 6. Concentration ratios 3:1, 1:1, and 1:3 near saturation at 35∈°C
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2O. 6. Concentration ratios 3:1, 1:1, and 1:3 near saturation at 35∈°C. J. Phys. Chem. 98, 13054-13057 (1994)
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Eppstein, L.B., Miller, D.G.: Previously unpublished ternary experiments done at Lawrence Livermore National Laboratory in 1973
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2O at 25∈°C
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the supplemental material to this paper contains the improved alignment procedure
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2O at 25∈°C. J. Phys. Chem. 88, 5739-5748 (1984), the supplemental material to this paper contains the improved alignment procedure
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Optical methods
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Miller, D.G., Albright, J.G.: Optical methods. In: Wakeham, W.A., Nagashima, A., Sengers, J.V. (eds.) Measurement of the Transport Properties of Fluids: Experimental Thermodynamics, vol. III, pp. 272-294. Blackwell Scientific, Oxford (1991), references pp. 316-320
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Nonlinear regression programs for the analysis of Gouy fringe patterns from isothermal free diffusion experiments on three-component systems
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Albright, J.G., Miller, D.G.: Nonlinear regression programs for the analysis of Gouy fringe patterns from isothermal free diffusion experiments on three-component systems. J. Phys. Chem. 93, 2169-2175 (1989)
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A method for obtaining multicomponent diffusion coefficients directly from Rayleigh and Gouy fringe position data
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Miller, D.G.: A method for obtaining multicomponent diffusion coefficients directly from Rayleigh and Gouy fringe position data. J. Phys. Chem. 92, 4222-4226 (1988)
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2 solutions at 25∈°C. Electrochim. Acta 33, 795-799 (1988)
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