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of switchable RNA nanostructures. Develop databases for RNA modules for automated building of atomistic models. Develop multistate sequence design algorithm for rational design of RNA switches. Develop database
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genes and mechanisms in DNA double-strand repair using automated equipment for high-throughput strain engineering, novel assays for detection and monitoring DNA repair, as well as the use of fluorescence
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includes the following tasks: Develop computer-aided design software for modular construction of switchable RNA nanostructures. Develop databases for RNA modules for automated building of atomistic models
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includes the following tasks: Develop computer-aided design software for modular construction of switchable RNA nanostructures. Develop databases for RNA modules for automated building of atomistic models
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identification and population monitoring Contribute to automated approaches for tracking long-term population trends in wildlife Collaborate with colleagues on ongoing modelling and simulation work across the
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Job Description SDU Robotics is currently extending the team within the project CAPeX which focuses on robotics for laboratory automation. We therefore invite applications for one or more fully
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identification and population monitoring Contribute to automated approaches for tracking long-term population trends in wildlife Collaborate with colleagues on ongoing modelling and simulation work across the
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to ensure that the developed notations and algorithms address the companies’ needs. More about the related project can be found here: https://innovationsfonden.dk/da/news-article/ai-skal-forudsige-og-forklare
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the sustainability of the built environment. Within this programme, the Centre leads the research field on Digitalisation and Automation, where robotics and artificial intelligence are applied to low-carbon and