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Journal ArticleDOI

Free Energy of a Nonuniform System. I. Interfacial Free Energy

John W. Cahn, +1 more
- 01 Feb 1958 - 
- Vol. 28, Iss: 2, pp 258-267
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TLDR
In this article, it was shown that the thickness of the interface increases with increasing temperature and becomes infinite at the critical temperature Tc, and that at a temperature T just below Tc the interfacial free energy σ is proportional to (T c −T) 3 2.
Abstract
It is shown that the free energy of a volume V of an isotropic system of nonuniform composition or density is given by : NV∫V [f 0(c)+κ(▿c)2]dV, where NV is the number of molecules per unit volume, ▿c the composition or density gradient, f 0 the free energy per molecule of a homogeneous system, and κ a parameter which, in general, may be dependent on c and temperature, but for a regular solution is a constant which can be evaluated. This expression is used to determine the properties of a flat interface between two coexisting phases. In particular, we find that the thickness of the interface increases with increasing temperature and becomes infinite at the critical temperature Tc , and that at a temperature T just below Tc the interfacial free energy σ is proportional to (T c −T) 3 2 . The predicted interfacial free energy and its temperature dependence are found to be in agreement with existing experimental data. The possibility of using optical measurements of the interface thickness to provide an additional check of our treatment is briefly discussed.

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Lattice Boltzmann modeling of transport phenomena in fuel cells and flow batteries

TL;DR: In this paper, the lattice Boltzmann (LB) method has attracted broad interest in the computational fluid dynamics and the numerical heat transfer communities, primarily due to its kinetic nature making it appropriate for modeling complex multiphase transport phenomena.
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Mathematical and numerical modeling of two-phase compressible flows with micro-inertia

TL;DR: In this article, a model with full coupling between micro-and macroscale motion is developed for compressible multiphase mixtures, and the equations of motion and the coupling microstructural equation (an analogue of the Rayleigh-Lamb equation) are obtained by using the Hamilton principle of stationary action.
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Gradient and vorticity banding

TL;DR: In this article, the authors proposed a minimal model for gradient banding, which assumes a decrease of the shear stress of the homogeneously sheared system with increasing shear rate within a certain shear-rate interval.
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Spinodal nanodecomposition in semiconductors doped with transition metals

TL;DR: In this paper, the authors present the recent progress in computational materials design, experimental realization, and control methods of spinodal nanodecomposition under three and two-dimensional crystal growth conditions in spintronic materials, such as magnetically doped semiconductors.
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From Constant mean Curvature Hypersurfaces to the Gradient Theory of Phase Transitions

TL;DR: In this paper, it was shown that for all e small enough there exists a critical point of the Allen-Cahn energy whose nodal set converges to Σ as e tends to 0.
References
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Journal ArticleDOI

The Principle of Corresponding States

TL;DR: The principle of corresponding states in modern form has been applied to the following properties: the critical state, the virial coefficient, the Boyle point, the densities of coexistent phases, the vapor pressure of the liquid, the entropies of evaporation and of fusion, the coefficient of thermal expansion of liquid and the triple point temperature and pressure, the heat capacity of liquid, and the surface tension of liquid as mentioned in this paper.
Book ChapterDOI

Zur Theorie des Austauschproblems und der Remanenzerscheinung der Ferromagnetika

TL;DR: The Slatersche Methode as mentioned in this paper is an analog zur Jordan-Kleinschen Theorie in eine nichtlineare Wellengleichung im dreidimensionalen Raum, wobei das Absolutquadrat der Wellenfunktion anschaulich als Spindichte gedeutet werden kann.
Journal ArticleDOI

Die Keimbildung bei der Ausscheidung in metallischen Mischkristallen

R. Becker
- 01 Jan 1938 - 
TL;DR: In this article, ausscheidung in einem ubersattigten binaren Mischkristall is considered, das die Energie eines Misch-kristalls durch einfache Addition of Nachbarbindungen berechnet werden darf.
Journal ArticleDOI

Domain Structure of Rochelle Salt and K H 2 P O 4

TL;DR: In this paper, it has been shown that rochelle salt in the ferroelectric state consists of many domains and that the domain structure in an annealed crystal is caused by the electrostatic self energy.
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