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Energy , free of formation

A general prerequisite for the existence of a stable interface between two phases is that the free energy of formation of the interface be positive were it negative or zero, fluctuations would lead to complete dispersion of one phase in another. As implied, thermodynamics constitutes an important discipline within the general subject. It is one in which surface area joins the usual extensive quantities of mass and volume and in which surface tension and surface composition join the usual intensive quantities of pressure, temperature, and bulk composition. The thermodynamic functions of free energy, enthalpy and entropy can be defined for an interface as well as for a bulk portion of matter. Chapters II and ni are based on a rich history of thermodynamic studies of the liquid interface. The phase behavior of liquid films enters in Chapter IV, and the electrical potential and charge are added as thermodynamic variables in Chapter V. [Pg.1]

A2.1.6.7 STANDARD STATES AND STANDARD FREE ENERGIES OF FORMATION... [Pg.366]

Significant vapor pressure of aluminum monofluoride [13595-82-9], AIF, has been observed when aluminum trifluoride [7784-18-1] is heated in the presence of reducing agents such as aluminum or magnesium metal, or is in contact with the cathode in the electrolysis of fused salt mixtures. AIF disproportionates into AIF. and aluminum at lower temperatures. The heat of formation at 25°C is —264 kJ/mol(—63.1 kcal/mol) and the free energy of formation is —290 kJ/mol(—69.3 kcal/mol) (1). Aluminum difluoride [13569-23-8] h.3.s been detected in the high temperature equihbrium between aluminum and its fluorides (2). [Pg.140]

Thermodynamic analysis of this reaction shows favorable energy relations (18). The standard free energy of formation of DPA is 310.5 kj /mol (74.2 kcal/mol) (19). [Pg.243]

Physical Properties. Sulfur dioxide [7446-09-5] SO2, is a colorless gas with a characteristic pungent, choking odor. Its physical and thermodynamic properties ate Hsted in Table 8. Heat capacity, vapor pressure, heat of vaporization, density, surface tension, viscosity, thermal conductivity, heat of formation, and free energy of formation as functions of temperature ate available (213), as is a detailed discussion of the sulfur dioxide—water system (215). [Pg.143]


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Apparent free energy of formation

Energy of formation

Enthalpies and Gibbs Free Energies of Formation

Enthalpy, entropy and free energy of formation

Formation energy

Free Energy of j-mer Formation

Free energies and enthalpies of formation from the elements

Free energies of pore formation

Free energy for formation of a critical nucleus

Free energy for formation of a nucleus

Free energy formation

Free energy of bond formation

Free energy of formation from the

Free energy of formation from the elements

Free energy of formation in solution. Convention concerning hydrates

Free energy of micelle formation

Free energy of solution formation

Free formation

Gibbs free energy change of formation

Gibbs free energy of formation

Heats and Free energies of formation

Occupation Probabilities and Free Energy of Cavity Formation

Properties Gibbs free energy of formation

Standard free energies of formation

Standard free energy of formation (AGf

Standard free energy of micelle formation

The standard Gibbs free energy of formation

Values for cellular enthalpy, entropy, and free energy of formation

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