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for communication, navigation and surveillance (CNS) in the frequency range 100 – 400 MHz is of interest. We are now looking for PhD students who, together with the support of our team of researchers, want to develop
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/Pages/default.aspx . Our research is in the area of statistical physics. The present project concerns how microswimmers navigate turbulent environments. The swimming behavior of plankton is key when
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data and creating algorithms for quantitative assessment. Could it also be that you naturally navigate new ideas, solutions, and data-driven analysis methods in your way of working? You would also find
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considered if documented advanced courses in related to cloud formation, climate physics, aircraft propulsion, aircraft design, aircraft navigation, trajectory optimization, multidisciplinary analysis, data
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physics, aircraft propulsion, aircraft design, aircraft navigation, trajectory optimization, multidisciplinary analysis, data science are provided. You should also have: - Good skills in programming
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the output of actuators with minimum input -Implementing the actuators in real-time systems, creating soft robots Distributed task planning and navigation for collaborative manipulation. -Localization in
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are essential, as our project relies on collaborative efforts to achieve its goals. We value individuals who can navigate complex research landscapes with a proactive attitude and who are committed
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to control, stabilize and maximize the output of actuators with minimum input -Implementing the actuators in real-time systems, creating soft robots Distributed task planning and navigation for collaborative
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-aware navigation -Learning-based large scale collaborative SLAM and coverage path planning for large-scale dense reconstruction For further information about a specific subject see general curricula
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abstraction layers mapping, scene graph generation and digital twin creation -Traversability analysis and dynamic object tracking for environmental-based risk-aware navigation -Learning-based large scale