196 postdoctoral-soil-structure-interaction-fem-dynamics Postdoctoral positions in Sweden
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material structures (3D) and their evolution (4D), particularly for fibre-based materials but also porous and granular materials. You will be part of a dynamic, international team involved in experimental
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disease resistance under changing climate conditions. Key Responsibilities: Conduct research on host-microbe-environment interactions in farmed salmonids and shrimps. Utilize genomics, epigenomics, and
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projects with the common goal of advancing our understanding of the ecology and dynamics of fish populations in the Baltic Sea. The main focus of the position will be to investigate spatial structures in
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Science | KTH coordinates the EU project TauBE , funded by the European Innovation Council (EIC) Pathfinder programme . The postdoctoral project is carried out in collaboration with researchers at KTH and
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is close. Our cohesive campuses make it easy to meet, work together and exchange knowledge, which promotes a dynamic and open culture. The ongoing societal transformation and large green investments in
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comparison. Thus, this project will deliver an evidence-based decision support to forest stakeholders and policy makers. About the position The postdoctoral candidate will join the research group of Prof
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We are searching for a motivated postdoc interested in investigating how soil-plant-atmosphere interactions are affected by agrivoltaics, i.e., the combination of crop production and solar panels
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for sustainable life, based on science and education. Through our focus on the interaction between humans, animals and ecosystems and the responsible use of natural resources, we contribute to sustainable societal
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Ref no: ORU 2.1.1-03066/2025 We are looking for up to two postdoctoral researchers in Computer Science, specializing in Cybersecurity and Embodied AI, for a fixed-term position at the School
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postdoctoral scientist to join the Friedländer team which is part of the MBW department and has research activities at SciLifeLab. Our team has recently found RNA molecules to be present in fragmented form in