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- NORWEGIAN UNIVERSITY OF SCIENCE & TECHNOLOGY - NTNU
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Research assistant (50%) in contemporary art at the Art Academy Apply for this job See advertisement UiB - Kunnskap som formar samfunnet Gjennom eit sterkt og tett samspel med omverda - globalt
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critical literature review to identify the state-of-the-art and research gaps, designing research projects and methodologies, and generating, collecting, and analysing data. Publish findings in top-tier
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on this multidisciplinary project. You will contribute to the design and optimization of power-barge solutions incorporating state-of-the-art battery technologies and alternative fuels for a zero-emission energy portfolio
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computing techniques. You will join a team of international researchers with diverse backgrounds to address the challenges presented by a common problem, and to improve over the current state-of-the-art both
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of regulatory bodies to ensure high safety. Important topics are: Safety principles for nuclear energy production State of the art of nuclear risk analysis methodology and a comparison with state of the art in
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salmon. Contribute to diet formulation and feed production. Study the impact of novel microbial feed ingredients on fish performance and health, using state-of-the-art tools (including transcriptomics
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project (2024-2027) “Impaired microcirculation and tissue hypoxia as a possible mechanism in ME/CFS”, and is funded by the University of Bergen We offer the unique opportunity to work with state-of-the-art
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business models and value chains. Many innovative solutions and state-of-art ideas exist that tend to be expensive. The high cost makes the funding organizations reject such ideas and solutions, thereby
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state-of-the-art by providing a dynamic and interactive guide where solution providers can get streamlined and tailored decision support based on the local contexts and needs, and the changing environment
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. This leaves the material with a reduced level of microstructural heterogeneity and a rather deterministic fracture behaviour that is often accurately predicted by state-of-the-art ductile fracture models