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Are you fascinated by understanding fundamental neurobiological processes in the context of stress and depression? Are you intrigued to learn more about early-life stress as risk factor for
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the understanding of the transition processes in practice and develop ways to better govern the collection of transitions. This research setting builds on knowledge and theories at the intersection of innovation
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this project, you will combine a deep knowledge of physical chemistry with robotic systems and AI models. You will learn how to programme advanced robotic systems and how to implement aspects of deep learning
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setting builds on knowledge and theories at the intersection of innovation studies, construction management, and public management with many opportunities to collaborate with other research fields related
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cognition? You will design and run experiments that combine non-invasive brain stimulation (TMS/tACS), EEG, fMRI, and physiological recordings to test new models of brain-body interaction. We will also
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ask: how do brain and body rhythms interact and how do they influence cognition? You will design and run experiments that combine non-invasive brain stimulation (TMS/tACS), EEG, fMRI, and physiological
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for medical imaging, tailored for deep learning. The high-level goal of the project is simple: to use anatomical knowledge and existing knowledge as training data for deep neural networks (instead of manual
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infrastructure managers You will be part of a multidisciplinary project with leaders in the domain of infrastructure governance and modelling. You will learn to conduct research independently and grow
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for an inclusive community and welcome employees with diverse backgrounds, cultures, and perspectives. Will you also contribute to making the world a little better? You have a part to play. If you want to learn more
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. The university is one of Europe’s leading research institutions, working with top universities worldwide to share knowledge and maintain its position as a hub for innovation and learning. Located in the vibrant