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physically and functionally coupled across domains of life. The project will involve working with syntrophic deep-sea consortia, performing strictly anoxic physiological experiments, and developing electrode
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segmentation of organs from medical images; generation of simulation-ready surface and volumetric meshes from segmentations; and modelling realistic boundary conditions, particularly the interaction between
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Norwegian Seafood Research Fund. Responsibilities and qualifications Your overall focus will be to strengthen the department’s competencies in modelling ocean waves and their interaction with floating
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Climate, where we conduct research into past and present changes of the inland ice and the ocean. In addition to research, we also carry out consultancy projects for government agencies and private
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-waveguide couplings that surpass the time-bandwidth limit of static cavities [Xue2022]. With these components as building blocks, we envision large-scale recirculating circuit architectures [Heuck2023b
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Oil pipeline from the North Sea to refinery Planned hydrogen pipeline Potential future CO2 infrastructure The location represents a rare opportunity to develop a multi-vector Power-to-X hub, integrating
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duration of employment These are 2–year positions from April 2026 or as soon possible thereafter. Research area and project description The impact of freshening from melting land and sea ice is expected
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this. It is important to develop a detailed picture of the cell types affected by these changes and if possible the temporal sequence in which they occur in order to intervene to restrict cancer progression
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- and project-based focus, and continued education and knowledge dissemination. Your work tasks The work is shared between two projects. One project is across the North Sea region, addressing safety
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world, and with the pending climate change (sea level rise and increased storminess in Northern Europe), coastal erosion is expected to potentially worsen. State-of-the-art practical engineering models