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talented candidate with a Master’s degree in civil engineering, mechanical engineering, or a related discipline Solid background in mechanics of materials and finite element analysis Sound knowledge
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Strong background in computational science, applied mathematics, or computational biology Ideally, familiarity with numerical methods for PDEs (e.g., finite difference, finite element) HPC experience is a
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of ceramic disks Piezoelectric characterization of cold-sintered ceramic disk Explore the mechanical properties of cold-sintered ceramic disks using biaxial test methods Explore microstructural
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continuum modeling (finite element modeling, computational fluid dynamics), and proven experience with COMSOL Multiphysics. Knowledge of heat and mass transport processes in heat-sensitive materials and
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methane-oxidizing bacteria and other microbial community members shape ecosystem function, and the role of metal competition in regulating microbial activity and methane oxidation. The project involves a
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characterization of cold-sintered ceramic disk Explore the mechanical properties of cold-sintered ceramic disks using biaxial test methods Explore microstructural properties of the cold-sintered ceramic disks
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resorbing naturally after bone repair. Yet, most current Mg alloys contain rare earth elements (REEs) to improve mechanical stability and corrosion resistance, raising concerns about biocompatibility
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electron microscopy, atomic force microscopy, metal evaporation, wire bonding), performing computer-based simulations and modelling in COMSOL, physics of strongly correlated many-body systems. We offer you
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processing (reactive ion etching, optical/electron beam lithography, scanning electron microscopy, atomic force microscopy, metal evaporation, wire bonding), performing computer-based simulations and modelling
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technologies with clinical practice, developing solutions that enable accurate and real-time diagnosis and therapies. Project background Polyethylene wear is a major factor affecting the long-term performance