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these nanocomposites, we are looking for a postdoc to further develop high performance computing numerical methods in our state-of-the-art open source micromagnetic model, MagTense. MagTense is based on a core
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emitted. You will become part of the newly established Danish PFAS Centre, which aims to provide tools to monitor and assess PFAS, and thereby to support the Danish EPA and the Danish Ministry of
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tradition of combining fundamental level as well as for high area materials. New catalyst could here be sought for synthesis of higher hydrocarbons and alcohols. Your work will involve synthesis, test, and
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candidate with a strong background in ruminant nutrition and especially in forage evaluation and modelling rumen nutrient metabolism. The successful candidate is expected to take part in the initiatives
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expertise in dependability, performance, and sustainability will drive us towards a smarter, greener future. By joining us, you stand to gain extensive support unlocking your career potential. You'll have
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, with possibility of extension. The project is part of the larger research project “AI4NaturalFood”, which is financed by the Novo Nordisk Foundation. Start date is 1 September 2025 or as soon as possible
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modelling will focus on integrating the nitrogen cycle and GHG fluxes at the field and farm scales, thereby improving our understanding of how different management practices influence the landscape. Your work
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PostDoc position (for 2-years) Successful candidates will have an exciting opportunity to work on the AM2PM project that focuses on “Monitoring Environmental Impact in Construction Projects”, “Digital Twin
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a research climate encouraging lively, open and critical discussion within and across different fields of research a work environment with close working relationships, networking and social activities
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sources with embedded quantum memories based on erbium in ultracompact tunable silicon nanocavities. You will be part of a well-funded project that builds on our recent experimental breakthroughs in ultra