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. About the research project Wind-powered propulsion is a key route to reducing emissions from shipping, but the interaction between the flow around a wind propulsion system and the structural response
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process conditions, composition, structure and functionality of milk and whey proteins, and how these affect the quality, texture, stability and nutritional value of fermented dairy products. The work
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structures, topological phases, correlation phenomena, and materials for green energy. Duties The postdoctoral position involves working in a larger theoretical research environment focused on the development
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programs and master's programs. More information is available on our website . (https://kemi.uu.se/angstrom/?languageId=1 ). The Structural Chemistry section at the Department of Chemistry – Ångström
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well as processing of protein-rich fractions through dairy processes. Particular emphasis is placed on the relationship between process conditions, composition, structure and functionality of milk and whey proteins
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feedstocks – including fibre structure, crystallinity, purity, accessibility and water retention – and relate these parameters to the suitability of the raw materials. You will plan and carry out systematic
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regions by developing interpretable and efficient methods in comparative pangenomics, leveraging machine learning methods, statistical analysis and efficient algorithm and data structures (https
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regions by developing interpretable and efficient methods in comparative pangenomics, leveraging machine learning methods, statistical analysis and efficient algorithm and data structures (https
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molecular structures during normal and leukemic stem cell differentiation. Integrated in the translational research environment at the Center for Hematology and Regenerative Medicine at the Karolinska
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. Simulation-based inference (SBI) addresses this by training neural networks, such as flow-matching generative models, on simulated events. The project aims to develop efficient, robust and calibrated SBI