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to stop the development of type 2 immunity are lacking, as are pathways that specifically regulate the development of allergies, while retaining anti-parasite and wound healing responses. PhD Project
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materials. • Developing new methodologies in the field of nanofluidics. • Design and implementation of nanofluidic experiments with porous materials. • Publishing and presentation of scientific results
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research spectrum covers a unique range. Institute of Coastal Ocean Dynamics The Institute of Coastal Ocean Dynamics at the Hereon develops innovative technologies, investigates the physical and
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. Correlating experimental, ab initio and multi-scale simulation as well as machine learning techniques is central to our mission: Development and application of advanced simulation techniques to explore and
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to identify targets for the development of rejuvenation strategies. We have established a large dataset of single cell whole transcriptomic analysis of hematopoietic progenitors and bulk RNAseq of endothelial
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to (i) develop and adapt state-of-the-art methods from data science and (ii) apply the acquired knowledge to the research domains of the respective Helmholtz centers. The research will be accompanied by
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oriented, regionally anchored top university as it focuses on the grand challenges of the 21st century. It develops innovative solutions for the world's most pressing issues. In research and academic
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scientific workshops, transferable skill courses, and career development activities To apply, candidates should hold (or expect to hold prior to the start of their PhD) a M.Sc. (or an equivalent degree) in
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to act first and evaluate much later. This PhD project closes this gap by: integrating the porous-media solver of DuMux, the IWS-developed simulator, with its new shallow-water module recently created in
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a vibrant scientific community. Join us in developing solutions for a rapidly changing world and help shape the future by working in an international environment. For more information about the