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Max Planck Institute for Plasma Physics (Garching), Garching | Garching an der Alz, Bayern | Germany | 3 months ago
the sun - generates energy from the fusion of light atomic nuclei. The research is carried out in seven experimental and theoretical projects aimed at developing nuclear fusion into an inexhaustible and
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of nutrition and health, with the aim of understanding the molecular basis of nutrition-dependent diseases, and of developing new strategies for treatment and prevention. The Department of Molecular Metabolism
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The Mueller group studies nanoscale light-matter coupling phenomena in quantum materials. We use polaritons to shrink light to the nanoscale and employ ultrafast nonlinear optical techniques to bridge phenomena in the typically separate mid-infrared and visible spectral ranges. We aim to advance...
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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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, to organize workshops and conferences and to engage in international research networks. It closely collaborates with the Faculty of Law at the University of Munich (LMU). Your profile The ideal candidate has
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to integrate variety and crop mixtures into breeding practices to bolster resilience and adaptability against climate change. By exploring the genetic architecture of crop mixtures and developing predictive
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Researcher / Postdoc for molecular investigations on microbial ecology in deep-sea polymetallic n...
collaboration and cooperation - intra-institute, national and international, interdisciplinary opportunities to develop – on the job and towards other positions an international environment – everyday contact
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24.02.2025, Wissenschaftliches Personal The TRR 352 represents a successful collaboration between LMU Munich, Technical University of Munich, and the University of Tübingen, focusing
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transporters, e.g. PIN auxin efflux carriers, in plant development. The projects routinely employ combinations of cell biological, biochemical and developmental approaches to deepen the understanding
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interfaces (application programming interface, API) for system control are being developed in order to automate both process monitoring and process control. The API-based integration of the digital twin