31 multi-core Postdoctoral positions at Aarhus University in Ireland-University-Ranking-2024
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A three-year postdoc position is available in modelling of solid-state NMR experiments from 1 October 2026 (or soon thereafter) in the Danish Center for Ultrahigh-Field NMR Spectroscopy
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. The position is connected to the MAPP research centre. MAPP is a world-class interdisciplinary research centre at Aarhus University conducting social science research of highest quality. MAPP is dedicated
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Danish School of Education The Danish School of Education at Aarhus University is Denmark’s largest centre for research and teaching in the fields of education, didactics and learning, with approximately
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is a collaboration between the Department of Computer Science and the Centre for Science Studies at Aarhus University, Denmark. The position is available from 1 December 2026, or as soon as possible
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. Support for international conference participation and possible research stays A collaborative environment across the Department of Chemistry, CENSEMAT Centre for Energy Materials, and the iMAT Center
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computed tomography for proton therapy, as per October 1, 2026, or as soon as possible thereafter (after agreement). The working place for the postdoc will be the Danish Centre for Particle Therapy (DCPT
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the Department of Chemistry, CENSEMAT Centre for Energy Materials, and the iMAT Center for Integrated Materials Research Qualifications PhD in chemistry, physics, materials science, or a related field
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they make use of the department's modern laboratory-, core- and animal facilities. The Department of Biomedicine focuses on innovation, entrepreneurship and collaboration with business and industry, and
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the laboratory, at meetings and at seminars. The department employs approx. 500 people from all over the world, and they make use of the department's modern laboratory-, core- and animal facilities. The Department
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the start date. Job description This opportunity is positioned at the heart of a collaboration between Aarhus University, EPFL and DTU to understand microbiological mechanisms underpinning the Greenland Ice