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of Electrical Engineering. Project description: Autonomous vehicles for mining and mobile robotics for industrial processes require complex motion planning as well as safe model-based predictive control and
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located on the Huddinge campus of the Karolinska Institute. The overall aim of our research group is to understand cytotoxic lymphocyte biology, in order to explain and better treat severe inborn errors
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by combining state-of-the-art computer simulations, physical experiments, and clinical studies in radiology departments at the hospitals in the region. You will work in a multi-disciplinary team and
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, and time spent as part of a procedure for obtaining refugee status under the Geneva Convention are not taken into account. must not have a doctoral degree at the date of recruitment. fluency in English
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, power system analysis, as well as experience in modelling, simulation, or experimental work. Ability to work independently, in a structured and goal-oriented manner, both individually and in collaboration
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that simulate anoxic and oxic conditions to quantify radionuclide remobilization under climate-driven changes. Develop and apply advanced radiochemical and mass spectrometric methods (alpha spectrometry, ICP-MS
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scenarios. Duties Your work will focus on modeling and optimizing hydrogen compression, storage, and fueling processes at the system level. This includes, among other tasks: Thermodynamic simulations of CGH
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CMOS technologies. Well-versed in the end-to-end design flow, including circuit design, simulation, layout, PCB design, and measurement of integrated circuits using advanced CAD tools. Excellent
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simulations of hydrogen bunkering and transfer systems on board ships. Analysis of temperature development, mass and energy balances, and flow/pressure variations during fueling and operation. Material testing
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, as well as data processing and writing. Qualifications: The successful candidate should have: Exam in crop science, biology or agronomy Sound knowledge of plant ecology Interest in agriculture and crop