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Free energies of transfer from water to NMA

Free energies of transfer of K complexes of dibenzo-18-crown-6 and -cryptand 137 from water to non-aqueous solvents at 25 C

Free energies of transfer, AC

Free energies of unfavorable interactions between substituents on the tetrahydropyran ring

Free energies offormation of some lanthanide and actinide halides

Free energies oftransfer, ACf in kj mol

Free energies relative to 8-inethyl-N5-deazapterin

Free energies relative to 8-methyl-N5-deazapterin

Free energies, apparent equilibrium constants, mass action ratios, and maximum enzyme activities .

Free energies, heats and entropies of ionizaiion, methyl disvhstituted compounds Ionization process

Free energies, heats and entropies of ionization of some organic dibasic acids

Free Energies8

Free energy and parameters for a polymer in a sea of blockers when V Vi.

Free Energy Change for Transfer from Water to 100 Ethanol at 25 C

Free energy change, AG ct, and rate constants, of photoinduced electron transfer from group 14 organometallic electron donors to C, observed rate constants, obs, triplet quenching rate constants, kq, and limiting quantum yields, Oco, in the photoaddition of the donors to in benzonitrile at 298 K .

Free energy changes calculated for the mutation 6,8-dimethyl-N5-deazapterin — 6-methyl-N5-deazapterin in solution. Results for 80 ps simulation, with 200 ps

Free Energy Changes for Dissociation of HX Molecules in Water at 298 K

Free energy changes for the mutation 6,8-dimethyl-N5-deazapterin — 6-methyl-N5-deazapterin for the ligands bound to various dihydrofolate reductases with and without NADPH cofactor. Results are for 80 ps simulation, with 200 ps simulation in parentheses.

Free energy changes for various morphological structures of latex particles dispersed in water

Free energy changes in the ionic dissociation of carbon-carbon 7 bonds in some hydrocarbons at 25 C.

Free energy changes in the ionic dissociation of carbon-carbon cr bonds in some hydrocarbons at 25 C.

Free energy components intermolecular harmonic vibration, g, and the potential energy, u, of structures at minimum potential energy. The differences defined as 9w averaged over

Free energy components of resolvation process in mixed solvents at 298.15K

Free energy components of resolvatlon process in mixed solvents at 298.15K

Free energy difference 6



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