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to the development of state-of-the-art nuclear-reaction models and evaluated nuclear-data libraries, supporting safe, reliable, and competitive technologies for both existing and future nuclear-energy systems, as
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and infrastructural related issues. Project description For this PhD position, the research will focus on evaluating the potential of natural hydrogen production in Norrbotten County in Sweden using
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Wassélius. The research environment is interdisciplinary and based on close collaboration between neurology and radiology, with a particular focus on the development and evaluation of diagnostic methods and
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, characterize them, evaluate and improve them with respect to battery performance, and study fundamental chemical processes and properties using both experimental and computational techniques. The research is, as
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communities across different lake habitats; (ii) evaluate the consequences of biofilm compositional changes for the production and trophic transfer of health-promoting biomolecules (i.e., essential
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-for-time field survey approach to (i) assess the effects of lake oligotrophication and changing winter conditions on benthic biofilm communities across different lake habitats; (ii) evaluate
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studies ranging from the development and preclinical evaluation of radiopharmaceuticals to biological characterization, quantitative image analysis, and assessment of treatment response. Within the research
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electrode and electrolyte materials, characterize them, evaluate and improve them with respect to battery performance, and study fundamental chemical processes and properties using both experimental and
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injection, storage and withdrawal; - evaluate the effects of operational loading on the integrity of steel liners, concrete and surrounding rock; - develop reference designs for lined rock caverns
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of Oncology, Department of Clinical Sciences, Lund University. This interdisciplinary composition enables studies ranging from the development and preclinical evaluation of radiopharmaceuticals to biological