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influence of microstructure. The modelling will encompass methods for representing microstructures in simulations, crystal plasticity, homogenisation techniques, FEM, and parameter identification based
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research topic of qubits, as researched in the Quantum Computing group . It has been shown that having a high-quality superconducting cavity can improve the resonator Q-value. Using FEM simulations and
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project will be conducted at the Physics, Electronics, and Mathematics (FEM ) division within the Department of Science and Technology (ITN ) at Linköping University, Norrköping campus. It is a
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Mathematics (FEM ) division within the Department of Science and Technology (ITN ) at Linköping University, Norrköping campus. It is a collaborative effort with Lund University. The research will be supervised
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in Mechanical Engineering, Civil Engineering, Engineering Physics or similar with a focus on solid mechanics, numerical methods (e.g., FEM), and multibody dynamics. (We also welcome applications from
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methods (e.g., FEM), and multibody dynamics. Proficiency in Matlab or Python, as well as experience with commercial finite element and/or multibody dynamics software. Strong written and oral