Sentence examples for normal boiling temperature from inspiring English sources

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The only experimental data required in order to apply the proposed method are the normal boiling temperature and the critical constants Tc and Pc.

The model uses the critical temperature, the critical volume, the normal boiling temperature and the molecular mass to estimate the density at temperatures commonly used in ionic liquid applications (270 360 K).

The vapor pressures of two important cannabinoids, cannabidiol (CBD) and Δ9-tetrahydrocannabinol (Δ9-THC), are presented, as well as the predicted normal boiling temperature (NBT) and the predicted critical constants (these predictions are dependent on the vapor pressure data).

When given molecular structure of working fluid, the normal boiling temperature, critical properties, liquid density and ideal gas heat capacity can be obtained via the existing group contribution methods (GCMs).

The two empirical constants of a semi-theoretical relation are related to the reduced second virial coefficient values of a pure compound calculated at the normal boiling temperature and at the critical temperature.

When applied to the n-alkanes C6 C16 from the normal boiling temperature down to a reduced temperature of 0·41 the method leads to a convenient vapour equation of the form ln p0 = alnT + bT − (d/T) + E.

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The input parameters of the model are temperature, molecular weight of IL, normal boiling point temperature of IL, critical pressure of IL, critical volume of IL, and acentric factor of IL.

This paper presents a mathematical model "CHEMIC", which can be used for evaluating such substance properties, assuming that six basic constant quantities are available (molecular weight, freezing or melting point, normal boiling point, critical temperature, critical pressure and critical volume).

The "normal boiling point" is the temperature at which the vapor pressure of a liquid is exactly 1 atm pressure; at this temperature the gas and liquid phases are in equilibrium, and a gas phase can form (depending on the volume of the closed system); above this temperature the liquid will transform (or boil) to a gas.

The normal boiling point (Tb), critical temperature (Tc), critical pressure (Pc), critical density (ρc), and critical compressibility factor (Zc) are essential thermophysical properties for science and engineering.

Important issues related to property modeling such as reliability and predictive capability of the property prediction models, and thermodynamic consistency of the predicted properties (such as, relation of normal boiling point versus critical temperature) are also analyzed and discussed.

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