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Enthalpies of solution, enthalpies of fusion and enthalpies of solvation of polyaromatic hydrocarbons: Instruments for determination of sublimation enthalpy at 298.15K/vaporization of the compound of interest and its enthalpies of solution and solvation in the same solvent at 298.15. K

Thermochemistry of phase transitions of aromatic amines: Estimation of the sublimation enthalpy at 298.15 K through the fusion enthalpy at 298.15 K based on solution enthalpies at 298.15 K and fusion enthalpies at the melting temperatures

Additive scheme for calculation of solvation enthalpies of heterocyclic aromatic compounds. Sublimation/vaporization enthalpy at 298.15 K on enthalpies of solvation and solution. Solvation enthalpies of heteroatomatic and carbonyl

Enthalpies of fusion and enthalpies of solvation of aromatic hydrocarbons derivatives: Estimation of sublimation enthalpies at 298.15 K using the values of solution enthalpy and solvation enthalpy in any solvent. In this work enthalpies

New aspects of relationship between the enthalpies of fusion of aromatic compounds at the melting temperature and the enthalpies of solution in benzene at 298.15 K. Part II
enthalpies at the melting temperature of aromatic compounds and solution enthalpy values in benzene at 298

Determination of sublimation enthalpies of substituted benzophenones, fluorenes and diphenyl ethers by solution calorimetry approach, fluorene and diphenyl ether) is calculated as the difference between solution enthalpy and sublimation

Enthalpies of fusion and enthalpies of solvation of aromatic hydrocarbons derivatives: Estimation of sublimation enthalpies at 298.15 K using the values of solution enthalpy and solvation enthalpy in any solvent. In this work enthalpies

Non-additivity in the solvation enthalpies of NH-containing compounds and estimation of their sublimation enthalpies at 298 K solution enthalpies and estimated values of solvation enthalpies. The vaporization and sublimation

New aspects in the thermochemistry of solid-liquid phase transitions of organic non-electrolytes
to relationship between the fusion enthalpies of aromatic compounds at the melting temperature and the solution

New method for determination of vaporization and sublimation enthalpy of aromatic compounds at 298.15 K using solution calorimetry technique and group-additivity scheme is based on the general relationship between vaporization/sublimation enthalpy and enthalpies of solution

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