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Boiling temperature and the enthalpy of water vaporization exposed to high frequency electromagnetic field

Bulletin of the Karaganda University-Chemistry Series, 2019
The article is dedicated to the study of the influence of a high-frequency electromagnetic field on the boiling temperature and the enthalpy of water vaporization.
V. Chirkova, Ye.A. Sharlayeva, I. Stas
semanticscholar   +1 more source

Vapor heat capacities and enthalpies of vaporization of six organic compounds

The Journal of Chemical Thermodynamics, 1981
Abstract Experimental values of vapor heat capacity for the real gas and enthalpy of vaporization, determined by vapor-flow calorimetry, are reported for cyclohexanethiol, 2-methyl-1-butanethiol, tetrahydrofuran, oxetane, 4-methylpyridine, and hexafluorobenzene.
I.A. Hossenlopp, D.W. Scott
openaire   +1 more source

Enthalpy of vaporization from Henry's law measurements

Journal of Chemical Education, 1980
Calculating the enthalpy of vaporization for ammonia from Henry's law measurements of temperature, equilibrium vapor pressure, and the mole ratio in the liquid phase.
Wiktor M. Raldow, Wayne E. Wentworth
openaire   +1 more source

Determination of vapor pressures, enthalpies of sublimation, and enthalpies of fusion of benzenetriols

Thermochimica Acta, 2004
Molar enthalpies of sublimation of 1,2,4-, 1,2,3-, and 1,3,5-tri-hydroxy-benzene, were obtained from the temperature dependence of the vapor pressure measured by the transpiration method. The molar enthalpies of fusion and molar heat capacities of these compounds were measured by DSC.
Sergey P Verevkin, Christoph Schick
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Molecular dynamics calculations of the enthalpy of vaporization for different water models

Journal of Molecular Liquids, 2023
Sajad Kargar   +2 more
semanticscholar   +1 more source

Determination of vapor pressures and enthalpies of vaporization of 1,2-alkanediols

Fluid Phase Equilibria, 2004
Molar enthalpies of vaporization of 1,2-ethanediol, 1,2-propanediol, 1,2-butanediol, 1,2-pentanediol, 1,2-hexanediol, and 1,2-octanediol were obtained from the temperature dependence of the vapor pressure measured by the transpiration method. The measured data sets were successfully checked for internal consistency.
openaire   +1 more source

Comprehensive Study of Vapor Pressures and Enthalpies of Vaporization of Cyclohexyl Esters

Journal of Chemical & Engineering Data, 2003
Vapor pressures and standard molar enthalpies of vaporization were determined for five cyclohexyl esters:  cyclohexyl formate, cyclohexyl acetate, cyclohexyl propanoate, cyclohexyl butyrate, and cy...
Dzmitry H. Zaitsau   +4 more
openaire   +1 more source

Enthalpies of vaporization of some highly branched hydrocarbons

The Journal of Chemical Thermodynamics, 1995
Abstract Measurements of the molar enthalpy of vaporization Δ vap H m at the temperature T = 298.15 K are reported for 14 liquids and 6 solids each containing one or more quaternary carbon atoms, by the methods of transpiration, head-space analysis, or gas chromatography. The results are compared with literature values and with estimates based on a
James S. Chickos   +8 more
openaire   +1 more source

Vapor pressures and vaporization enthalpy of codlemone by correlation gas chromatography

The Journal of Chemical Thermodynamics, 2015
Abstract The vapor pressure and vaporization enthalpy of codlemone (trans, trans 8,10-dodecadien-1-ol), the female sex hormone of the codling moth is evaluated by correlation gas chromatography using a series of saturated primary alcohols as standards.
Shannon M. Schultz   +2 more
openaire   +1 more source

Modeling of the vaporization enthalpies of petroleum fractions

Fluid Phase Equilibria, 2016
Abstract The vaporization enthalpies of petroleum fractions are required in processing and transportation applications, as well as to optimize and design oil and gas production, and in heat flux calculations. A model was developed in this study for determining the vaporization enthalpies of pure hydrocarbon components and petroleum fractions.
Arash Kamari   +3 more
openaire   +1 more source

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