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Max Planck Institute of Molecular Cell Biology and Genetics, Dresden | Dresden, Sachsen | Germany | about 1 month ago
will combine complementary experimental and computational approaches, including: Mouse models of tissue injury, regeneration and chronic damage Advanced mouse and human organoid and assembloid systems
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members of the CSBD. They are encouraged to develop and use theoretical or computational approaches to study biological systems in close collaboration with experimental groups at the MPI-CBG and the TUD
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and identify pathways that can be targeted to restore tissue homeostasis. Your tasks: Experimental studies of intestinal organoid systems and immune cells, including planning of experimental design
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experiments, supported by close collaboration with theoretical researchers. This postdoctoral position focuses on exploring emergent states and properties of quantum and topological magnets through experimental
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research and innovation spaces, they foster creative experimentation, scientific exchange, and interdisciplinary collaboration. As maker spaces, they are accessible to members of the cluster as
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optimization of electrolysis from the cell to the stack requires automated monitoring, analysis, and control of the operating parameters and processes. As part of this project, high-throughput experimental
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computational biology across the university and affiliated institutes, as well as with experimental researchers (wet lab) in the AG Laugsch, to support accurate data interpretation and integration Maintain clear
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lead innovative research projects in cognitive neuroscience Coordinate experimental activities and support PhD researchers within the team Contribute to ongoing externally funded projects Publish in
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perception. The project is in close collaboration with the experimental groups in the institute. Key Responsibilities Molecular Dynamics simulations Enhanced sampling Molecular Dynamics simulations AI
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of the next generation of image analysis, scientific software, and intelligent experiment control for microfluidic live-cell analytics in close collaboration with experimental partners at HZI, Helmholtz Munich