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multiple resources increases the complexity for students learning processes and demands for agency and cognitive efforts change. Today we have limited insight into students’ processes and outcomes with AI
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-ligand complexes to inform compound design. The postdoc will be part of the Brenk lab which conducts research in the area of structure-based drug design. About the project/work tasks: Protein expression
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the Lie-Størmer Center. The position is associated with the Center’s work package WP4 – Topology, Algebra, and Geometry for Complex Data Analysis. The Lie-Størmer Center is jointly hosted by UiT
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combining field sampling with laboratory experiments and statistical modelling to quantify genetic variation in complex traits, the candidate will test whether these contrasting histories have driven
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associated with the Center’s work package WP4 – Topology, Algebra, and Geometry for Complex Data Analysis. The Lie-Størmer Center is jointly hosted by UiT The Arctic University of Norway (UiT) and the
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for applications. Documented hands-on experience with isolation, quality assessment and preparation of single-cell and/or nuclei suspensions from complex biological material for downstream single-cell or single
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interpret complex "omics" data Experience in handling and analysis of clinical samples/biopsies Experience with extracellular vesicle/exosome characterization. Familiarity with proteomics or other omics
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contribute to form their learning trajectories. To navigate and use multiple resources increases the complexity for students learning processes and demands for agency and cognitive efforts change. Today we
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advanced visual perception methods for reliable object detection, scene understanding, and interaction under adverse environment conditions. The goal is to enable fully autonomous execution of complex
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that may not fully reflect the complex flow conditions present in individual patients. This project aims to improve the assessment of aortic valve disease through the development of patient-specific