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Journal of Pharmaceutical Sciences|August 4, 1998
The hydrophobic effect. 1. A consequence of the mobile order in H-bonded liquidsP Ruelle, U W KesselringJournal of Pharmaceutical Sciences|August 4, 1998
The hydrophobic effect. 3. A key ingredient in predicting n-octanol-water partition coefficientsP Ruelle, U W KesselringJournal of Pharmaceutical Sciences|May 1, 1977
Effect of temperature and relative humidity on nitrazepam stability in solid stateD Genton, U W KesselringPharmaceutical Research|February 1, 1994
Solubility predictions for solid nitriles and tertiary amides based on the mobile order theoryP Ruelle, U W KesselringJournal of Pharmaceutical Sciences|August 4, 1998
The hydrophobic effect. 2. Relative importance of the hydrophobic effect on the solubility of hydrophobes and pharmaceuticals in H-bonded solventsP Ruelle, U W KesselringJournal of Pharmaceutical Sciences|February 1, 1997
The hydrophobic propensity of water toward amphiprotic solutes: predicton and molecular origin of the aqueous solubility of aliphatic alcoholsP Ruelle, U W KesselringJournal of Pharmaceutical Sciences|September 1, 1983
Quantitative assessment of the effect of some excipients on nitrazepam stability in binary powder mixturesP R Perrier, U W KesselringJournal of Pharmaceutical Sciences|March 1, 1994
Hydrophobic effect at the origin of the low solubility of inert solid substances in hydrogen-bonded solventsP Ruelle, M Buchmann, U W KesselringPharmaceutical Research|June 1, 1992
The mobile order theory versus UNIFAC and regular solution theory-derived models for predicting the solubility of solid substancesP Ruelle, M Buchmann, N T Hô, et al.Journal of Pharmaceutical Sciences|February 1, 1988
Determination of the total and partial cohesion parameters of lipophilic liquids by gas-liquid chromatography and from molecular propertiesA Munafo, M Buchmann, H Nam-Tran, et al.Pageof 2