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Entropy formulation of evolutionary phase transitions

Project
The ground-breaking nature of the project relies on the possibility of opening new horizons with a novel mathematical formulation of physical problems. The project aim is indeed to obtain relevant mathematical results in order to get further insight into new models for phase transitions and the corresponding evolution PDE systems. The new approach presented here turns out to be particularly helpful within the investigation of issues like as existence, uniqueness, control, and long-time behavior of the solutions for such evolutionary PDEs. Moreover, the importance of the opportunity to apply such new theory to phase transitions lies in the fact that such phenomena arise in a variety of applied problems like, e.g., melting and freezing in solid-liquid mixtures, phase changes in solids, crystal growth, soil freezing, damage in elastic materials, plasticity, food conservation, collisions, and so on. From the practical viewpoint, the possibility to describe these phenomena in a quantitative way has
  • Overview
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  • Publications

Overview

Type

H2020_ERC - Horizon 2020_Europern Research Council

Funder

EUROPEAN COMMISSION
External Organization Funding Organization

Date/time interval

April 1, 2011 - September 30, 2013

Project duration

30 months

Research Areas

Concepts


PE1_8 - Analysis - (2013)

Keywords

PHASE TRANSITIONS
No Results Found

Publications

Outputs (14)

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  • Academic Article
Imidazolium-Based Ionic Liquids Affect Morphology and Rigidity of Living Cells : An Atomic Force Microscopy Study 
LANGMUIR
AMERICAN CHEMICAL SOCIETY
2018
Academic Article
Reserved Access
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Optimal Boundary Control of a Simplified Ericksen–Leslie System for Nematic Liquid Crystal Flows in 2D 
ARCHIVE FOR RATIONAL MECHANICS AND ANALYSIS
SPRINGER
2017
Academic Article
Open Access
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Global strong solutions of the full Navier-Stokes and Q-tensor system for nematic liquid crystal flows in two dimensions 
SIAM JOURNAL ON MATHEMATICAL ANALYSIS
SOCIETY FOR INDUSTRIAL AND APPLIED MATHEMATICS PUBLICATIONS
2016
Academic Article
Open Access
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Optimal control for a phase field system with a possibly singular potential 
MATHEMATICAL CONTROL AND RELATED FIELDS
2016
Academic Article
Open Access
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A diffuse interface model for two-phase incompressible flows with nonlocal interactions and nonconstant mobility 
NONLINEARITY
2015
Academic Article
Reserved Access
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Damage processes in thermoviscoelastic materials with damage-dependent thermal expansion coefficients 
MATHEMATICAL METHODS IN THE APPLIED SCIENCES
WILEY
2015
Academic Article
Reserved Access
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Optimal distributed control of a nonlocal convective Cahn-Hilliard equation by the velocity in 3D 
SIAM JOURNAL ON CONTROL AND OPTIMIZATION
SOCIETY FOR INDUSTRIAL AND APPLIED MATHEMATICS (SIAM)
2015
Academic Article
Open Access
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Evolution of non-isothermal Landau–de Gennes nematic liquid crystals flows with singular potential 
COMMUNICATIONS IN MATHEMATICAL SCIENCES
INTERNATIONAL PRESS
2013
Academic Article
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On a 3D isothermal model for nematic liquid crystals accounting for stretching terms 
ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND PHYSIK
SPRINGER
2013
Academic Article
Reserved Access
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On the long-time behavior of some mathematical models for nematic liquid crystals 
CALCULUS OF VARIATIONS AND PARTIAL DIFFERENTIAL EQUATIONS
SPRINGER
2013
Academic Article
Open Access
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Trajectory attractors for the Sun–Liu model for nematic liquid crystals in 3D 
NONLINEARITY
IOP PUBLISHING
2013
Academic Article
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Well-posedness of an extended model for water-ice phase transitions 
DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS. SERIES S
THE AMERICAN INSTITUTE OF MATHEMATICAL SCIENCES
2013
Academic Article
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A new approach to non-isothermal models for nematic liquid crystals 
ARCHIVE FOR RATIONAL MECHANICS AND ANALYSIS
SPRINGER
2012
Academic Article
Open Access
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A model for resistance welding including phase transitions and Joule heating 
MATHEMATICAL METHODS IN THE APPLIED SCIENCES
2011
Academic Article
Open Access
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