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development) will be used to characterize the interaction between two grains surrounded by foam. 2.2. Numerical Modeling: The numerical microstructure at the grain scale will be used as input data for finite
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with finite element modeling (FEM) and computational simulations. Microfabrication & Electrical Characterization: cleanroom fabrication and electrical testing of nanodevices. What We Offer: A dynamic
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to control the transformations and strongly reduce undesired processes. Thesis objectives: a) Understand the impact of selected sputtering parameters on the metal oxide microstructure and dopant insertion. A
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: microstructure and mechanics modeling 1.Context and Summary Recycling materials often involves crushing or grinding them into finer elements, such as granules or powder, for sorting and reuse. This applies
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background in finite element modeling (preferably using software such as Abaqus or FEniCS) Experience in fracture mechanics (ex Phase-Field approach) Previous experience with sensitivity analysis and reduced