45 development "https:" "https:" "https:" "UCL" "UCL" "UCL" Postdoctoral positions at Nature Careers in Germany
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data from the European XFEL facility at DESY. Project website: https://www.mpinat.mpg.de/628848/SM-Ultrafast-XRay-Diffraction Your profile Eligible candidates have strong skills in computational physics
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development. It is one of the world's leading research institutions in its field and offers natural and social scientists from around the world an inspiring environment for excellent interdisciplinary research
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11 37077 Göttingen Germany https://www.mpinat.mpg.de/grubmueller Social Media: CompBioPhys Information pursuant to Article 13 DS-GVO on the collection and processing of personal data during
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to uncover how gene expression and mechanical forces interact to shape embryonic development. This role offers a unique opportunity to work at the interface of developmental biology, biophysics, and
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application. Our aim is to develop innovative methods for the cost-effective production of personalised gene therapies using non-viral gene transfer. The research project is geared towards a future spin-off and
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Job Advertisement Job-ID 03/2026 At the Leibniz Institute for Natural Product Research and Infection Biology (Leibniz-HKI), we investigate the pathobiology of microorganisms and develop new natural
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(e.g. RNAi, CRISPR/Cas9, small-molecules). In this context, we also develop new computational tools for automated analysis and data visualization. These include algorithms and software applications
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or early bystander adaptations to a disturbed lung microenvironment? Disease Modeling and Biomarkers: Can we develop relevant complex in vitro models to study lymphatic dysfunction, and generate biomarkers
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analyzing developmental-oncogenic signaling pathways using a combination of experimental and computational approaches. Within this project, we are creating perturbation-based genetic maps at the level of
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available in the PaquetLab at the Institute for Stroke and Dementia Research, Munich. Our research focusses on developing human brain tissue models from iPSCs to investigate mechanisms of Alzheimer’s disease