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Publications by Donald A. Palmer
Isopiestic Determination of the Osmotic and Activity Coefficients of Li2SO4(aq) at T=298.15 and 323.15 K, and Representation With an Extended Ion-Interaction (Pitzer) Model
Journal of Solution Chemistry
Biochemistry
Theoretical Chemistry
Physical
Molecular Biology
Biophysics
Related publications
Isopiestic Investigation of the Osmotic and Activity Coefficients of {yMgCl2+(1−y)MgSO4}(aq) and the Osmotic Coefficients of Na2SO4⋅MgSO4(aq) at 298.15 K
Journal of Solution Chemistry
Biochemistry
Theoretical Chemistry
Physical
Molecular Biology
Biophysics
Correction to Model Performances Evaluated for Infinite Dilution Activity Coefficients Prediction at 298.15 K
Industrial & Engineering Chemistry Research
Chemistry
Chemical Engineering
Manufacturing Engineering
Industrial
Application of the Pitzer Model for the Estimation of Activity Coefficients of Electrolytes in Ion Selective Membranes
Fluid Phase Equilibria
Theoretical Chemistry
Astronomy
Physics
Chemical Engineering
Physical
Estimation of the Pitzer Equation Parameters for Aqueous Complexes. A Case Study for Uranium at 298.15 K and 1 Atm.
Acta Chemica Scandinavica
Diffusion Coefficients in Aqueous Solutions of Cobalt Chloride at 298.15 K
Journal of Chemical & Engineering Data
Chemistry
Chemical Engineering
The Enthalpy of Vaporization and Sublimation of Corannulene, Coronene, and Perylene at T= 298.15 K
Journal of Chemical Thermodynamics
Materials Science
Molecular Physics,
Theoretical Chemistry
Atomic
Optics
Physical
Osmotic Coefficients and Mean Activity Coefficients of Uni‐univalent Electrolytes in Water at 25°C
Journal of Physical and Chemical Reference Data
Theoretical Chemistry
Chemistry
Physics
Astronomy
Physical
Thermodynamics of Aqueous Reciprocal Salt Systems. VI. Isopiestic Determination of Osmotic Coefficients in Mixtures of Chlorides, Bromides and Nitrates of Lithium, Sodium, Potassium and Cesium at 100.3 Degrees C.
Acta Chemica Scandinavica
Pitzer Thermodynamic Modeling Study on Solid–liquid Equilibria of the Quinary System LiCl–NaCl–CaCl2–SrCl2–H2O at 298.15 K
RSC Advances
Chemistry
Chemical Engineering