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Phase Transition Dynamics
Tian Ma,Shouhong Wang +1 more
- 10 Nov 2013
177
TL;DR: In this article, the General Theory of Phase Transition Dynamics (GTHD) is used to describe phase transition dynamics in statistical physics and chemistry and biology, and the phase transition in chemistry and Biology.
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Abstract: User's Guide.- General Theory of Phase Transition Dynamics.- Dynamic Transition Theory.- Equilibrium Phase Transition in Statistical Physics.- Fluid Dynamics.- Geophysical Fluid Dynamics and Climate Dynamics.- Dynamical Transitions in Chemistry and Biology.- References .
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Interaction pressure tensor for a class of multicomponent lattice Boltzmann models.
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New insights into the dynamics and morphology of P3HT:PCBM active layers in bulk heterojunctions
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References
On the principle of exchange of stabilities
TL;DR: In this paper, a perturbation theorem is proved that a class of real, bounded perturbations of norm ϵ to real self-adjoint operators preserve the reality of the simple eigenvalues for ϵ sufficiently small.
86
Boundary-Layer and Interior Separations in the Taylor--Couette--Poiseuille Flow
Tian Ma,Shouhong Wang +1 more
TL;DR: In this article, the boundary-layer and interior separations of the Taylor-Couette-Poiseuille (TCP) flow were derived and the authors provided a rigorous characterization on how, when and where the propagating Taylor vortices (PTV) are generated.
14
Equilibrium Phase Transition in Statistical Physics
Tian Ma,Shouhong Wang +1 more
- 01 Jan 2014
TL;DR: In this article, a combination of modeling, mathematical analysis, and physical predictions is used to capture the transitions from one equilibrium to another and to study the nature or order of such transitions.
2
Phase separation of binary systems
Tian Ma,Shouhong Wang +1 more
TL;DR: In this article, three physical predictions on the phase separation of binary systems are derived based on a dynamic transition theory developed recently by the authors, and a phase diagram is derived, characterizing the order of phase transitions, and leading in particular to a prediction that there is only a second-order transition for molar fraction near 1 / 2.