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permanent magnet. You will use our state-of-the-art open source micromagnetic model MagTense to perform this modeling work. You will research determining the ideal microstructure, for example grain size
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Postdoctoral position for the project Human AI Collaboration: Imaginaries, Interventions, Interfaces
the department’s website . School of Communication and Culture The school is a part of the Faculty of Arts. You will find information about the school and its research programmes , departments , and diverse
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The Department of Anthropology at the School of Culture and Society, Faculty of Arts, Aarhus University invites applications for a full time (37h/w) 2-year fixed-term postdoctoral position in
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synchrotron beamline provides a unique environment for developing novel diffraction methodologies, data-analysis workflows, and experimental capabilities. The candidate will have access to state-of-the-art
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The Department of Anthropology at the School of Culture and Society, Faculty of Arts, Aarhus University invites applications for a full time (37h/w) 2-year fixed-term postdoctoral position in
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. Formalities Faculty of Arts refers to the Ministerial Order on the Appointment of Academic Staff at Danish Universities (the Appointment Order) . Further information on qualification requirements and job
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staff from around the world. Further information about our research, the people and our state-of-the-art laboratory equipment can be found here: Brummerstedt Iversen Group The Department of Chemistry at
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, based on a grant from Villum Fonden. The project builds on recent advances in the economics of science and innovation, applying state-of-the-art citation- and text-based measures to capture atypical
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of adipocyte identity. To address these questions, the project integrates complementary, state-of-the-art approaches, including: Chromatin conformation analyses (e.g., Micro-C and related approaches) Super
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Materials Development (Lab4DMade). A central aim of the project, and of this position, is to develop local strain analysis tools for the state of-the-art laboratory 4D X-ray micro-beam diffraction technique