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interdisciplinary collaboration. This PhD project is focused on numerical simulation of resistance spot welding with existing electro-thermo-mechanical finite element modeling as a foundation. Computational fluid
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advance this, you will break new ground in establishing an AI-enhanced modelling framework to disclose fundamental mechanisms coupling twist angles in 2D bilayer heterostructures, magnetism and catalysis
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. The successful candidate will have obtained excellent grades in his/her Bachelor and Master educations. A solid background in quantum mechanics and solid state physics is required. Moreover, knowledge
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construction and safety, building energy and installation, solid mechanics, fluid mechanics, materials technology, manufacturing engineering, engineering design and thermal energy systems. The research under
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design Desirable Qualifications Experience with or interest in gas-phase fragmentation mechanisms and ion chemistry Interest in computational proteomics, spectral library development, or fragmentation
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atomic-resolution TEM. Linking 3D atomic structure, dynamics, and catalytic function of individual nanoparticles. Identifying and stabilizing uniquely active nanoparticles to uncover atomistic mechanisms
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atomic-resolution TEM. Linking 3D atomic structure, dynamics, and catalytic function of individual nanoparticles. Identifying and stabilizing uniquely active nanoparticles to uncover atomistic mechanisms