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TV-L, part-time 65%) in the DFG-funded Integrated Research Training Group (RTG) Beyond Amphiphilicity – RTG 2670: Self-Organization of Soft Matter via Multiple Noncovalent Interactions . The position
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the aggregating bacteria to encapsulate and integrate them as a whole. Remarkably, despite decades of research on bacterial ECM, while its components and responsible genes are relatively well characterized for many
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, microbiology, biotechnology, or a related field Prior experience in phage biology, molecular biology, microbiology, and/or biochemistry Highly motivated and independent and able to work as part of
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Description The Institute of Energy Technologies – Fundamental Electrochemistry (IET-1) focuses on the development of performance-oriented and sustainable materials and components
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Description We have an open fully funded PhD position for 3 years with the possibility of extension. The successful candidate will be part of a growing team in the Institute of Biochemistry, group
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holiday leave, company pension scheme (VBL) We support a good work-life balance with the possibility of part-time employment, mobile working and flexible working hours Numerous company health management
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-motivation and interest to learn new skills Great to have: Experience programming in Python, Julia, or C/C++ Experience with Mathematica Experience with finite element methods, agent-based simulations, and/or
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position is to be filled at the institute at the earliest possible date, for a fixed term of three years, as part of the DFG funded project “A modular prion-like domain code for the activation of the heat
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“ mathematics, though we prefer not to make that distinction. Instead, research topics are grouped into eight parts, each covering a broad, but coherent, part of mathematics: Area 1: Geometry and topology Area 2
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for highly loaded, neutron-exposed components in nuclear reactors. High-entropy alloys have shown promising mechanical, thermo-mechanical, and corrosion-resistant properties. Their complex chemical composition