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imaging methods for understanding materials structure in material, life- and medical sciences. The PostDoc research will be part of a multi-center research project on applying and combining multi-modal 2D
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building of charge and ion transport processes in functional materials. Synthesis and processing of ceramic proton conductors, solid electrolytes and semiconductor photoelectrodes Structural characterization
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and industrial project partners. You will be responsible for: Developing and adapting machine-learning approaches for structure-based and generative molecular design. Integrating physicochemical
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reshape the structure and function of the epigenome. Over the past years, we have shown that remodeling the chromatin 3D structure is a key driver of tumor development and progression and demonstrated how
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: https://www.epfl.ch/labs/hobel/ For more information about Prof. Dusan Licina: https://people.epfl.ch/dusan.licina For more information about EPFL: https://www.epfl.ch/en/ For more information about Smart
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portal. Applications by e-mail and by post will not be considered. Where to apply Website https://academicpositions.com/ad/empa/2026/postdoc-position-on-redox-targeted-f… Requirements Research
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the field of sustainable construction. The research integrates dynamic material value-chain analyses, ownership models, technical performance assessment, and design-for-disassembly strategies to support the
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, cell biology and gas-exchange physiology. Within the research unit “Cereal Stem Cell Systems - RU52350; https://cerealstemcells.de ”, we are recruiting a Postdoc to investigate how grass leaves spatially
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protocols. In close collaboration with the lab of George Coukos (https://agora-cancer.ch/laboratory/coukos-lab/ ), we will derive protocols enabling rapid expansion of cancer-specific, autologous TILs
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, diabetes and cancer; see https://data.snf.ch/grants/grant/189065 ii) developing and validation of novel chemical probes and degraders to dissect mechanisms of adverse effects in cancer and metabolism. For a