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Subscribe to our Newsletter Get the latest tips, news, and developments. Photo, Interests, Affiliation, Positions, Education, Honors, Publications, Presentations, Teaching, Grants, Awards, Service. Mathematical and computer modeling of materials science. Mathematical fracture mechanics and free discontinuity problems. The position carries a teaching load of 13 hours per week. Research: Conducting research on shape optimization and numerical analysis of integro-partial differential equations. Teaching: According to the required teaching load of 13 hours per week, I am continuously teaching lectures, discussion and lab sections, and seminars.
For a complete list, use the following link to the section Teaching Experience. My teaching duties also include advising students on their theses and giving oral exams. Refereed manuscripts for Discrete Mathematics, Mathematics of Computation, Pure and Applied Functional Analysis, and The Open Mechanics Journal. Research within the applied project Numerical Simulation and Control of Sublimation Growth of Semiconductor Bulk Single Crystals.
Also conducted research on mathematical modeling of brittle fracture using energy functional minimization. Taught class on Optimal Control of Partial Differential Equations at the Humboldt University of Berlin, Germany, Department of Mathematics. Created lecture notes, devised and graded excercises, devised and conducted final oral exams. Based at IMA, Minneapolis, MN, USA. Determining propensity for failure in ceramics structures using integral, energy-based criteria. Conducted research in collaboration with WIAS: Numerical analysis and simulation of stationary and transient nonlinear heat transfer including diffuse-gray radiative heat transfer between cavity surfaces: Convergence of a finite volume scheme in the transient case.