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crystallisation of proteins over their biochemical and biophysical characterisation to photochemical activation and advanced, up to date structure determination using cryoEM, synchrotron and Free Electron Laser X
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to study protein structure and function (e.g., X-ray crystallography, NMR, cryo-electron microscopy). Additionally, you will investigate how these proteins interact with each other and with various
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education to enable regions to expand quickly and sustainably. In fact, the future is made here. We are looking for a PhD student in Medical Science with an interest in molecular and structural virology
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/ Read more about our benefits and what it is like to work at SLU at https://www.slu.se/en/about-slu/work-at-slu/ Comparative characterisation of structure and digestibility of plant-based proteins and
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, characterization of fabricated HCFs (on both structural and optical transmission properties), experimental investigations of material properties of ultra-thin silica membranes (through e.g. transmission electron
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a strong specialization in Sound and Vibration (We also welcome applications from candidates who will graduate soon). Solid knowledge of structural mechanics and numerical methods Proficiency in
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, molecular systems biology, and structural biology. The scientific foundation of what we do lies in biology, but our research overlaps with other fields such as medicine, computer science, mathematics
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School. DDLS uses data, computational methods and artificial intelligence to study biological systems and processes at all levels, from molecular structures and cellular processes to human health and
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application! We are looking for a PhD student in Wireless Communication and Computer Vision. Your work assignments Point clouds (PCs) are sets of three-dimensional (3D) data points and their attributes
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experimental and computational methods to understand membrane protein transport and signalling processes. The focus is to develop novel structural biology techniques with the aim to understand membrane protein