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Applications will be assessed by an assessment committee. Shortlisting may be applied, and only shortlisted candidates will receive a written assessment. Read about shortlisting at SDU. Interviews and tests
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will be in developing new techniques for testing and verifying modern highly concurrent systems, such as weak-memory architectures and highly-distributed databases. The position is also open, to some
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deploy the developed controllers within a test facility for remote maintenance located close to Odense. The candidates will contribute to developing and implementing the control system for a remote
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performance, and preventing failures like fires or explosions. Current prediction methods mainly rely on extensive lab testing and modeling, using insights from destructive post-mortem analyses to improve
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disease diagnostics. Responsibilities: Design, prototype, and test microfluidic systems for point-of-care biosensing applications Develop implantable or wearable devices for real-time in vivo diagnostics
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experimentally very difficult using macroscopic bulk investigations such as bottle tests. Therefore, we have used microfluidics to speed up this step. We now want to move further with this by also understanding
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-mechanical analyses, supporting isotope-yield target requirements, and contributing to regulatory interactions and technical dossiers. You will also take part in planning and documenting de-risking tests
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-disciplinary involving algorithmics, stochastic optimization, multi-criteria decision making, and data science. As part of the project, you will implement and test algorithms and further develop your skills in
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after the deadline will neither be considered nor evaluated. Interviews and tests may be part of the overall evaluation. The application and all appendices must be in English. We request files in pdf
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related to the first lab-scale testing of the technology. Tasks include: Building up an experimental proof-of-concept for assessment of the basic working principles the technology Quantification of reaction