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Field
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a green setting, offering excellent opportunities for networking with colleagues and for sports and recreation alongside your work Experienced and friendly international research team with a strong
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your doctoral degree: A large research campus in a green setting, offering excellent opportunities for networking with colleagues and for sports and recreation alongside your work Superb scientific and
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Participate in yearly retreats organized by the doctoral network participants Support the dissemination of software tools and concepts Supervise student projects and BSc/MSc theses Your Profile: Master’s degree
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(usually PhD). The Chair of Adaptive Dynamic Systems conducts research in the fields of reconfigurable computing, domain-specific multi- and manycore architectures, networks-on-chip (NoCs), methods and
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surround users on increasingly capable mobile devices, on edge compute nodes, and even on network components that were traditionally not imagined as computational nodes. To harness this opportunity, a
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amphibians and other aquatic vertebrates. Using advanced imaging, neurophysiological, and molecular biological methods, we investigate the olfactory system. Furthermore, we use the olfactory network as a model
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offer ideal conditions for you to complete your doctoral degree: A large research campus in a green setting, offering excellent opportunities for networking with colleagues and for sports and recreation
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informatics Comprehensive training courses and individual opportunities for personal and professional further development. A structured program of continuing education and networking opportunities specifically
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Max Planck Institute for Plant Breeding Research, Köln | Koln, Nordrhein Westfalen | Germany | about 1 month ago
, maintenance and troubleshooting on an Aria Fusion cell sorter Sample preparation, cell sorting and data analysis Generation of single cell libraries with 10X Genomics, Singleron and BD Rhap-sody platforms
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PhD Position - Organic Electrosynthesis: monitoring of reaction transients with real-time techniques
real-time analysis of electrochemical processes, developed in the Department of Electrocatalysis, will be applied by You to discover and develop novel Organic Electrosynthetic Protocols. Your tasks