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groups based on demographic, socioeconomic, and medical factors. You will mainly work with advanced epidemiological methods such as self-controlled case series (SCCS) and survival analyses, using Swedish
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contribute to our growing activities. Subject description Electronic Systems include electronics design, measurement technology and electromagnetic compatibility for control, monitoring and instrumentation
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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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in biomedical research and experience in application of image analysis in biomedicine; Experience of programming in Matlab, software version control with Git, typesetting with LaTeX; Experience with
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, PHITS, Geant4, MCNP, etc. Good understanding of and thorough experience with object-oriented programming. Ability to work in a team, good communication skills Good command of English, both oral and
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healthy controls. You are expected to publish four scientific papers as a result of this project. Qualifications To be eligible for the position, you must: Have completed or be in your final term of medical
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of novel computational methods and models, including extending methods already under development in the lab, with a particular focus on ways of exerting more precise control for protein design. In
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research, and communicate findings effectively. Experience with deep learning models or automatic differentiation. Familiarity with version control systems like GitHub. Our lab values diversity and inclusion
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of image analysis in medicine Experience of programming in Matlab, software version control with Git, typesetting with LaTeX, use of Linux computers Experience with graph-based methods, and graph
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and Control , we develop both theory and concrete tools to design systems that learn, reason, and act in the real world based on a seamless combination of data, mathematical models, and algorithms. Our