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Aqueous two-phase systems of poly(ethylene glycol) and dextrane - Experimental results and modeling of thermodynamic properties
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Osmotic virial coefficients of aqueous poly(ethylene glycol) from laser-light scattering and isopiestic measurements
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Hasse, H.; Kany, H.-P.; Tintinger, R.; Maurer, G. Osmotic Virial Coefficients of Aqueous Poly(ethylene glycol) from Laser-Light Scattering and Isopiestic Measurements. Macromolecules 1995, 28, 3540-3552.
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Thermodynamic properties of aqueous dextran solutions from laser-light-scattering, membrane osmometry, and isopiestic measurements
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Kany, H.-P.; Hasse, H.; Maurer, G. Thermodynamic Properties of Aqueous Dextran Solutions from Laser-Light-Scattering, Membrane Osmometry, and Isopiestic Measurements. J. Chem. Eng. Data 1999, 44, 230-242.
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Thermodynamic properties of aqueous sodium chloride solutions
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Pitzer, K. S.; Peiper, J. C.; Busey, R. H. Thermodynamic Properties of Aqueous Sodium Chloride Solutions. J. Phys. Chem. Ref. Data 1984, 13, 1-102.
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Evaluation of the thermodynamic functions for aqueous sodium chloride from equilibrium and calorimetric measurements below 154 °C
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Clarke, R. C. W.; Clew, D. W. Evaluation of the Thermodynamic Functions for Aqueous Sodium Chloride from Equilibrium and Calorimetric Measurements below 154 °C. J. Phys. Chem. Ref. Data 1985, 14, 489-610.
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2O-(cr), and phase equilibria
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2O-(cr), and Phase Equilibria. J. Phys. Chem. Ref. Data 1992, 21, 793-829.
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0034273232
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2O and NaCl (aq) in cold-stable and supercooled states
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Thermodynamics of electrolytes. I. Theoretical basis and general equations
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Pitzer, K. S. Thermodynamics of Electrolytes. I. Theoretical Basis and General Equations. J. Phys. Chem. 1973, 77, 268-277.
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Thermodynamics of electrolytes. II. Activity and osmotic coefficients for strong electrolytes with one or two ions univalent
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Pitzer, K. S.; Mayorga, G. Thermodynamics of Electrolytes. II. Activity and Osmotic coefficients for Strong Electrolytes with One or Two Ions Univalent. J. Phys. Chem. 1973, 77, 2300-2308.
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Pitzer, K.S.1
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0000723520
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Resolution of the dissociation constants of citric acid at 0 to 50 °C, and determination of certain related thermodynamic functions
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Bates, R. G.; Pinching, G. D. Resolution of the Dissociation Constants of Citric Acid at 0 to 50 °C, and Determination of Certain Related Thermodynamic Functions. J. Am. Chem. Soc. 1949, 71, 1274-1283.
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Bates, R.G.1
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11
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0007143494
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Thermodynamics of electrolytes. 7. Sulfuric acid
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Pitzer, K. S.; Roy, R. N.; Silvester, L. S. Thermodynamics of Electrolytes. 7. Sulfuric Acid. J. Am. Chem. Soc. 1977, 99, 4930-4936.
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Pitzer, K.S.1
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13
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33847087958
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Thermodynamics of electrolytes. 8. High-temperature properties, including enthalpy and heat capacity, with application to sodium chloride
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Silvester, L. F.; Pitzer, K. S. Thermodynamics of Electrolytes. 8. High-Temperature Properties, Including Enthalpy and Heat Capacity, with Application to Sodium Chloride. J. Phys. Chem. 1977, 81, 1822-1828.
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14
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85061161031
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A thermodynamic model for aqueous solutions of liquid-like density
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Pitzer, K. S. A Thermodynamic Model for Aqueous Solutions of Liquid-Like Density. Rev. Mineral. 1987, 17, 97-142.
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Pitzer, K.S.1
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15
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0000937052
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High-temperature properties of aqueous sodium sulfate solutions
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Rogers, P. S. Z.; Pitzer, K. S. High-Temperature Properties of Aqueous Sodium Sulfate Solutions. J. Phys. Chem. 1981, 85, 2886-2895.
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Rogers, P.S.Z.1
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16
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0031095924
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Distribution of citric, acetic and oxalic acids between water and organic solutions of Tri-n-octylamine
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Kirsch, T.; Ziegenfuß, H.; Maurer, G. Distribution of Citric, Acetic and Oxalic Acids between Water and Organic Solutions of Tri-n-Octylamine. Fluid Phase Equilib. 1997, 99, 235-266.
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