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of robots to interact with the surrounding environment and humans during the execution of specific tasks. Project description The fundamental vision of RAI is aiming in closing the gap from theory to real
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student to join our team and contribute to cutting-edge research in quantum computing, with a focus on quantum compilation. You will join the Theory of Computer Science group (TCS) at the Informatics
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from theory to real life, while the team has a strong expertise in field robotics. Specific application areas of focus are robotics for mines, aerial inspection of aging infrastructure, multi-robotic
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Governance unit, and explore issues that investigate and address whether and how AI technologies challenge traditional legal concepts, principles and theory. Examples include legal questions concerning
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the Public Administration and Governance unit, and explore issues that investigate and address whether and how AI technologies challenge traditional legal concepts, principles and theory. Examples include
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and methodological basis for defining the new concept of ‘landscape services’ in regional spatial design. In ‘Fertile Soils’, we see a potential that multiple spatial challenges in urban and rural areas
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contribute to the development of digital twins of propellers and explore collective learning approaches, where multiple propellers cooperate for optimal flight control. The PhD will be carried out in joint
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systems and control theory. Knowledge of fluid dynamics and related physical modeling. Strong programming skills (e.g. Python, MATLAB, or similar) for data analysis and model development. Ability to work
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in scientific methodologies that have transformed the study of, and interest for bioarchaeological remains, makes the PhD project highly relevant across multiple academic domains. Although the botany
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us if you’re excited about revealing molecular mechanisms controlling RNA stability by combining biochemical reconstitution, cell biology and genetics approaches. A strong background in these