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soft materials. Be directly involved in integrating experiments and theoretical prediction. Develop a new understanding of the fundamental flow physics through theoretical and/or numerical work. Develop
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an interest in investigating the effects of peatland restoration on hydrology and catchment biogeochemistry by means of a diverse set of methods, including field investigations, modelling and data-driven
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) . The section engages in theoretical, experimental and numerical fluid mechanics. This includes technology for the green transition, marine hydrodynamics, hydrodynamic waves, and continuum mechanics. This project
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theoretical prediction. Develop a new understanding of the fundamental flow physics through theoretical and/or numerical work. Develop independence and be self-driven to advance with their research project
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well as world leading industry partners. The candidate will be affiliated with the Mechanics Section (Section 1) . The section engages in theoretical, experimental and numerical fluid mechanics. This includes
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of Norway (2025-2030). It comprises more than 200 faculty members from many higher education institutions in Norway, in collaboration with numerous public and private sector partners. The primary objective
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higher education institutions in Norway, in collaboration with numerous public and private sector partners. The primary objective of MishMash is to create, explore, and reflect on AI for, through, and in
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Norwegian AI centre funded by the Research Council of Norway (2025-2030). It comprises more than 200 faculty members from many higher education institutions in Norway, in collaboration with numerous public
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-2030). It comprises more than 200 faculty members from many higher education institutions in Norway, in collaboration with numerous public and private sector partners. The primary objective of MishMash