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of Basel; enrolment in the International PhD Programme in Biomedicine, with courses, skills training and career development ● One of Europe's densest life-science ecosystems: alongside the University and its
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Your position You will develop generative models on single-cell and spatial genomics data, from sequencing and imaging, and apply them to human developmental and disease biology. Possible research directions include: ● Generative models of cell–cell communication . Move beyond descriptive...
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Materials science and technology are our passion. With our cutting-edge research, Empa's around 1,100 employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. In our research group, we design mechanically...
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and Health & Interventions, we are successful both nationally and internationally in our research and study programs. The PhD candidate will join the Human Development group at the Faculty of Psychology
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internationally in our research and study programs. The PhD candidate will join the Human Development group at the Faculty of Psychology, University of Basel and contribute to a research program investigating the
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Research Infrastructure? No Offer Description PhD Researcher in Trustworthy and Human-Centred AI Development The KOF Swiss Economic Institute at the ETH Zurich is the leading institute for applied research
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Your position You will work on the development of a nanopore-based platform for single-molecule analysis of nanoclusters. Your research will include: • Establishing nanopore assays for detecting and
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having accurate and well-informed reconstructions of the ecologies of ancient animals. This is key to our understanding of the broad-scale development of life on Earth and global ecosystems. Arthropods
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, including buildings, sports, and occupational safety. The project will establish the scientific and methodological foundation for the development and validation of innovative strategies to protect people from
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microenvironment, and advance understanding of osteoinductive scaffold development in bone tissue engineering. Our three objectives are a) to rationally engineer hydrogels tuned to the specific mechanical