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Kokubo, H., C. Y. Hu, and B. M. Pettitt. 2011. Peptide conformational preferences in osmo-
lyte solutions: Transfer free energies of decaalanine. Journal of the American Chemical
Society. 133, 1849.
Kokubo, H. and B. Pettitt. 2007. Preferential solvation in urea solutions at different concentra-
tions: Properties from simulation studies. Journal of Physical Chemistry B. 111, 5233.
Kokubo, H., J. Rösgen, D. W. Bolen, and B. M. Pettitt. 2007. Molecular basis of the apparent
near ideality of urea solutions. Biophysical Journal. 93, 3392.
Kontogeorgis, G. M., M. L. Michelsen, G. K. Folas, S. Derawi, N. von Solms, and E. H.
Stenby. 2006a. Ten years with the applications of cubic-plus-association EOS to pure
organic compounds and self-associating system (cubic-plus-association) equation of
state. Part 1. Pure compounds and self-associating systems. Industrial and Engineering
Chemistry Research. 45, 4855.
Kontogeorgis, G. M., M. L. Michelsen, G. K. Folas, S. Derawi, N. von Solms, and E. H.
Stenby. 2006b. Ten years with the CPA (cubic-plus-association) equation of state. Part 2.
Cross-associating and multicomponent systems. Industrial and Engineering Chemistry
Research. 45, 4869.
Kontogeorgis, G. M., E. C. Voutsas, I. V. Yakoumis, and D. P. Tassios. 1996. An equation of
state for associating fluids. Industrial and Engineering Chemistry Research. 35, 4310.
Kornblatt, J. A. and M. J. Kornblatt. 2002. The effects of osmotic and hydrostatic pressures
on macromolecular systems. Biochimica Et Biophysica Acta-Protein Structure and
Molecular Enzymology. 1595, 30.
Krichevskii, I. R. 1937. Thermodynamics of an infinitely dilute solution in mixed solvents.
I. The Henry coefficient in a mixed solvent behaving as an ideal solvent. Zhurnal
Fizicheskoi Khimii. 9, 41.
Kruse, A. and E. Dinjus. 2007. Hot compressed water as reaction medium and reactant—
Properties and synthesis reactions. Journal of Supercritical Fluids. 39, 362.
Kulkarni, A. M. and C. F. Zukoski. 2002. Nanoparticle crystal nucleation: Influence of solu-
tion conditions. Langmuir. 18, 3090.
Kumar, S. K. and K. P. Johnston. 1988. Modelling the solubility of solids in supercritical fluids
with density as the independent variable. Journal of Supercritical Fluids. 1, 15.
Kumelan, J., A. P. S. Kamps, D. Tuma, and G. Maurer. 2006. Solubility of H 2 in the ionic liq-
uid [bmim][PF 6 ]. Journal of Chemical and Engineering Data. 51, 11.
Kuntz Jr., I. D. and W. Kauzmann. 1974. Hydration of proteins and polypeptides. Advances in
Protein Chemistry. 28, 239.
Kurnik, R. T. and R. C. Reid. 1982. Solubility of solid mixtures in supercritical fluids. Fluid
Phase Equilibria. 8, 93.
Kusalik, P. G. and G. N. Patey. 1987. The thermodynamic properties of electrolyte-solutions—
Some formal results. Journal of Chemical Physics. 86, 5110.
Kusalik, P. G. and G. N. Patey. 1988. On the molecular theory of aqueous-electrolyte solu-
tions. 1. The solution of the RHNC approximation for models at finite concentration.
Journal of Chemical Physics. 88, 7715.
Kwiatkowski, J., Z. Lisicki, and W. Majewski. 1984. An experimental-method for measuring
solubilities of solids in supercritical fluids. Berichte der Bunsen- Gesellschaft- Physical
Chemistry Chemical Physics. 88, 865.
Lado, F. 1964. Perturbation correction to radial distribution function. Physical Review
A- General Physics. 135, 1013.
Lazaridis, T. 2002. Binding affinity and specificity from computational studies. Current
Organic Chemistry. 6, 1319.
Lazaridis, T., A. Masunov, and F. Gandolfo. 2002. Contributions to the binding free energy of
ligands to avidin and streptavidin. Proteins: Structure, Function, and Genetics. 47, 194.
Lebowitz, J. L. and J. K. Percus. 1961. Long-range correlations in a closed system with appli-
cations to nonuniform fluids. Physical Review. 122, 1675.
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