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alterations impact human lymphocyte development. By combining CRISPR-based genome engineering, induced pluripotent stem cells (iPSCs), and advanced thymus and bone marrow organoid systems, we study both
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-impact projects across our core focus areas. We are looking for curious minds who are excited to push the boundaries of responsible AI. Learn more about the lab's work at: https
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mechanisms, diagnostics, and therapeutic strategies, preparing them for successful careers in academia, clinical research, and related fields. Both PhD programmes are structured around three complementary core
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related to clouds, radiation, and atmospheric circulation. Climate models are at the core of our research, in particular models that simulate global weather and climate at kilometer-scale resolution. We
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, all of our work is related to clouds, radiation, and atmospheric circulation. Climate models are at the core of our research, in particular models that simulate global weather and climate at kilometer
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entrepreneurship and technology transfer. Program Highlights: Location: Technology and Research Center (TFZ), Wiener Neustadt, Austria Duration: 6 semesters (180 ECTS) Funding: €3,000 gross/month (14 payments per
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/center Supervision of students Participation in organizational and administrative tasks as well as in evaluation measures Your Profile A completed Master’s degree in chemistry, preferably with a focus on