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-fabrication processes for superconducting devices Automatic bring-up and calibration of quantum processors Design and simulation of quantum processors Optimal-control techniques for high-fidelity qubit
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We are looking for a highly motivated, skilled, and persistent PhD student with experience in computational fluid dynamics (CFD) and some knowledge in structural analysis. The research aims
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of quick clays. A novel combination of miniaturised thermal-hydro-mechanical experiments and particle level modelling will be pursued to unravel the unique mechanisms that make quick clays so hazardous and
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knowledge from experience and building goal-directed behaviors that combine dexterity with high-level planning to achieve complex manipulation tasks in real-world, human-centric settings. Research environment
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Documented experience (education/courses or thesis project) in advanced microstructure characterisation. Documented experience (education/courses or thesis project) in metallic materials. Interest in machine
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: Field sampling Laboratory experiments assessing the activity of mixed microbial cultures Chemical measurements Molecular biology techniques (e.g., metagenomics) to study microbial communities and their
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system-level analyses Fluency in spoken and written English which is our working language Willingness to learn Swedish, as necessary for providing teaching support at undergraduate level Experience in
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. The following experience will strengthen your application: Experience and good knowledge of metal AM, metallic materials and inorganic chemistry are considered as advantages. An interest and curiosity
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Engineering, Computational Engineering, Engineering Mathematics, Engineering Physics or similar* You will need strong written and verbal communication skills in English Documented experience (education/courses
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degree in Materials Science, Chemistry, Chemical Engineering, or a related field • Solid experience in polymer processing and characterization, particularly of solution-processed conjugated polymers