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Field
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its role in hematopoiesis over life time. We plan to employ inflammatory challenges and will combine experimental animal models with studies on human cells to translate principles and mechanisms
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Design and implement optimization techniques for full-stack improvement of quantum algorithms Model major sources of experimental error for control theory or for error mitigation techniques Scientific
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integration system for the syngas-fermenting bacterium Clostridium ljungdahlii, Biotechnol. Biofuels 12:112 What you will do Cloning and construction of expression systems Metabolic flux analysis for pathway
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Good written and spoken English skills Experience in the presentation and publication of research results Good communication and information behaviour, goal-oriented and structured way of working
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geometry. This position is funded by my ERC Advanced Grant "SYZYGY: Syzygies, moduli and topological invariants of groups“. Particular attention will be given to candidates showing affinity with one
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of inflammation remains the role of hypoxia. In this 3-year CRC (DFG)-funded position, we will use novel genetic reporters and transgenic models to specifically address the role of hypoxia during these processes
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. Recent advances suggest that magnesium (Mg)-based materials offer promising thermoelectric properties combined with environmental sustainability. This project, funded by the German Research Foundation (DFG
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CRISPR/Cas9, cloning, protein biochemistry, as well as work with cell cultures and primary patient samples (S1/S2) Conducting and establishing experiments with in vivo mouse models Analysis and
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-responsive proteins to develop genetic switches and circuits in therapeutically relevant bacteria. Your tasks: Use computational tools to design protein structures with desired properties Produce
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Start of announcement 21.05.2025 End of announcement 18.06.2025 Institute or department Institute of Coastal System Analysis and Modeling Location Geesthacht Apply now Go to applicant portal