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experimental procedures, these knowledge gaps will be tackled. Novel diagnostic tests will be developed, allowing the underlying mechanisms to be studied and deficits to be detected. Furthermore, novel
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this project, the candidate will develop new computational strategies to identify human genetic variation linked to cell fate changes in neurodevelopmental disorders and cancer. The candidate can use and combine
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, inclusive, and interdisciplinary work environment where early-career researchers are supported in developing their academic and professional skills. The unit leads several large-scale projects focused
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, scale up, implement and assess novel devices for solar energy conversion and storage, which includes thin-film organic solar cells as well as new solutions for green hydrogen and energy storage developed
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disorders is crucial to identify vulnerable population and develop effective prevention and intervention strategies. Using a focal cortical ablation model in pregnant rats, the project explores neurological
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on robotics, biomedical sensor and AI algorithm for cancer diagnosis. This project aims to develop a miniaturized robot and bio-sensor for on-site laryngeal cancer diagnosis. The candidate can contribute to one
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, enthusiasm for robotics and the drive to adopt new skills and extended responsibilities. We offer an open, international team with flexible work organization and support of individual development. SDU Robotics
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support of individual career development. A competitive salary and social benefits (e.g. health coverage, parental leave, social security etc). Further information Associate Professor Aida Solhøj Hansen