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Field
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Electron Microscopy (TEM) and HAADF-STEM images. Microscopy data are often degraded by noise and scan distortions, and clean ground truth data are rarely available. This project aims to go beyond standard
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barrier in the planned KBS-3 concept for final disposal of spent nuclear fuel. The PhD student will develop, apply, and combine theoretical molecular dynamics (MD) simulations with experimental techniques
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respect to battery performance, and study fundamental chemical processes and properties using both experimental and computational techniques. The research is, as such, both fundamental and applied. This PhD
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grounding, in other words, the linking of elements of natural language (words, phrases, or sentences) to visual inputs (such as images or video) in a meaningful way. The position is part of an on-going
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not more than 20 per cent of full working hours (Higher Education Ordinance, Chapter 5, Section 2). The intended degree is a Doctor of Philosophy, which corresponds to four years of full-time
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hours (Higher Education Ordinance, Chapter 5, Section 2). The intended degree is a Doctor of Philosophy, which corresponds to four years of full-time postgraduate education. Qualification To be admitted
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processes such as metabolic flux readouts and analyses of signaling pathways. In this way, the project integrates discovery-based proteomics with mechanistic experiments to directly link protein localization
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the degree of Doctor in Computing Science. While the position is mainly devoted to PhD studies (at least 80% of the time), it may include up to 20% department service (usually teaching). If so, the total time
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electrolytes, primarily solid-state, for applications in Li-based batteries. Polymer synthesis, electrolyte fabrication, construction and testing of prototype battery cells are all parts of the project
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relevant scaffold structures using extrusion-based 3D printing Application of crosslinking and post-processing treatments to enhance mechanical properties and structural properties Incorporation