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the challenges posed by implant-associated infections (IAIs), SHIELD aims to deepen our understanding of IAI mechanisms and develop innovative antibacterial biomaterials to improve patient outcomes. Structured
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the Centre for the Study of Professions. Programme description Information about the content and structure of this programme is described in more detail in the programme description (student.oslomet.no) PhD
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beams, collecting and analyzing data and qualifying modules for production and installation in ATLAS. The researcher will be part of a dynamic team consisting of researchers, engineers, and students from
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and analyzes quantitative and qualitative data on the firms’ pro bono efforts related to human rights, environment and climate change, and migration. PROBONO seeks to understand these dynamics and their
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date: 1 January 2026 or earlier. The PhD project is part of TIES project “ Tunable ion separations with micro-structured composite membranes ” . The project is funded by The Research Council of Norway
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our understanding of IAI mechanisms and develop innovative antibacterial biomaterials to improve patient outcomes. Structured around three core scientific pillars—regenerative medicine, biomaterial
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clearance to the seabed or sea surface can strongly affect performance, structural integrity, and fatigue life. These effects vary with water depth and turbine concept. This PhD project will investigate how
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tectonic and metamorphic history. Although it has been documented that graphite can be mobilized and accumulated along structural weaknesses such as ductile shear zones and fold hinges under high-grade
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candidate will drive the full experimental pipeline: computationally guided construct design; expression and purification of proteins; structural determination to resolve active-site architecture; activity
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and analyzes quantitative and qualitative data on the firms’ pro bono efforts related to human rights, environment and climate change, and migration. PROBONO seeks to understand these dynamics and their