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. Special attention will be given to developing robust electromechanical, sensing, and control solutions capable of operating safely in electrically harsh environments, as part of the Robots4Green EUDP
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, this includes various vacuum components such as turbopumps, foreline pumps, and pulsed molecular valves. Outreach You are expected to take a lead in writing research articles based on the results obtained in
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. Assessment Shortlisting will be used as part of the initial selection process. Assessment of shortlisted applications will be done under the existing Appointment Order for universities. Shortlisted
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-mechanical analyses, supporting isotope-yield target requirements, and contributing to regulatory interactions and technical dossiers. You will also take part in planning and documenting de-risking tests
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for load assessment and wind turbine control and ultimately achieve load reduction for wind turbine structures and main components. Your primary responsibilities will include: Develop, implement and validate
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, automation, and platform governance. As part of D-CORE, the Post Doctoral candidate will contribute to activities such as: Conduct literature reviews for publication in top-tier academic outlets Lead and
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, there will also be research tasks within precise (relative) positioning methods employing techniques such as SSR, FKP, and VRS. In addition to the above research, you will also take part in teaching, public
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understanding and applied solutions in the fracture of complex materials. Who we are The Department of Mechanical and Production Engineering is part of the Faculty of Technical Sciences, Aarhus University and
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for Active Sensing with Sound currently consists of approximately 4 senior PIs, three post docs, two PhD students and several MSc. It is part of the larger Bioacoustics community at the Section
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scientific foundation for animal welfare in Europe. The work will be part of projects in The European Partnership of Animal Health and Welfare. This will enhance your international professional network