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and function, and apply protein representation learning to uncover hidden links between proteins. At the SIB Swiss Institute of Bioinformatics, we develop SWISS-MODEL (https://swissmodel.expasy.org ), a
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disease and to develop pioneering therapies benefiting the lives of patients in areas of unmet need. With more than 70 research groups and 800 employees, the Department of Biomedicine is the largest
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Your position Stacking and twisting atomically thin materials offers unprecedented control over their nanoscale magnetic, electronic, and optical properties. In this project, we will develop a novel
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developments and have developed strong methodological skills in dealing with different source corpora of African history. We expect applications from independent and proactive researchers who wish to further
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single electron spins in diamond as sensors to explore magnetic phenomena at the nanoscale. This doctoral project will center around the development and application of scanning magnetometry at ultra-low
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active sites), in vitro and in vivo enzyme screenings, electrochemistry, and machine learning-assisted directed evolution. As part of this project, you will collaborate closely with PhD students and
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comprising re-surveys of historical vegetation data since the middle of the 19th century. The PhD candidate will have the opportunity to develop their own research questions within this broad theme. Finally
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. The candidate will join our multi-disciplinary team and focus on the development and performance of modern assays to evaluate bioactive molecules targeting major signaling pathways in cancer and inflammation
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from this research inform the development of new diagnostics, treatments, and vaccines against malaria, tuberculosis, schistosomiasis, Chagas and other neglected tropical diseases. Are you excited by
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of Basel invites applications for a PhD position to develop and apply a “Quantum optical twist and scan microscope" – an entirely novel scanning probe instrument for nanoscale studies of emergent properties