Publications

  • A Gibbs-potential-based framework for ideal plasticity of crystalline solids treated as a material flow through an adjustable crystal lattice space and its application to three-dimensional micropillar compression

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  • Stress-diffusive regularizations of non-dissipative rate-type materials

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  • Transport of congestion in two-phase compressible/incompressible flows

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  • Plastic deformation treated as material flow through adjustable crystal lattice

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  • Fluid Model of Crystal Plasticity: Numerical Simulations of 2-turn Equal Channel Angular Extrusion

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  • Elliptic problems in generalized Orlicz-Musielak spaces

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  • On the anisotropic Orlicz spaces applied in the problems of continuum mechanics

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Teaching

I am a teaching instructor for the Fundamentals of Computational Environmental Physics at Heidelberg University:

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