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study how tumor-intrinsic genetic alterations and spatially organized microenvironmental niches jointly shape metastatic progression and therapy response in colorectal cancer. The project is strongly
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vertically. The project combines urban studies, remote sensing, 3D modelling, environmental science, architecture, political science and participatory approaches to investigate the environmental, social and
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anatomy of the central nervous system. The current line of enquiry is to engineer human B cells to express a B cell receptor of interest in a way that enables native-like class switch, somatic hypermutation
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engineering, or a closely related discipline. A strong academic background in photovoltaic recycling, PV module materials, circular photovoltaics or end-of-life PV technologies. Alternatively, a strong
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from candidates with: A PhD in anthropology or a closely related discipline (completed before the start date). Strong qualitative research experience. Regional expertise relevant to one of the two
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collaboration and visiting opportunities A world-class research and training environment with access to state-of-the-art research facilities Informations Only applications submitted through the online platform
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Vlasov–Poisson and Vlasov–Maxwell systems). - The position includes teaching responsibilities, such as organising a course and assisting with exam grading. - The anticipated start date is 1st
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collaboration with the team. Your profile PhD degree in physics, materials science, chemistry, electrical engineering or a related discipline Knowledge of UHV and thin-film technology Prior experience in PVD and
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system serving as a real-world lead-optimization case study. The successful candidate will play a central role in the computational and AI components of the project and work closely with our international
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. (Both studies are currently under review.) Building on these findings, the successful candidate will investigate how microbial interactions shape ecosystem functions and how interaction principles scale