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Field
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technology developed by our group—as a fully operational, camera-based underwater imaging system. RODI is designed to continuously detect, classify, and quantify drifting organisms in situ, thereby enabling
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Leadership: Drive both computational and experimental aspects of spiking neuromorphic architecture design. Cross-disciplinary Integration: Bridge measured material properties and device behaviors with
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, coordinating with partners on use-case requirements, and contributing to project deliverables. About the TRUMAN Project: The goal of TRUMAN is to design and develop generic technologies and methodologies
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expertise in at least one, but ideally more, of the following domains are invited to apply: Design of novel, custom behavioral paradigms in mice. Use of hardware and (custom) software to interface and
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project, which focuses on the mechanical and mechatronic design of continuum surgical robots, with applications in neurosurgery and endovascular interventions, as well as sensing and control
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supervisor in developing and implementing the research agenda; Reproduce results of the state-of-the-art (SOTA) methods; Design and implement experiments on real platforms operating outdoors, to compare our
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++ and Python are required. Experience with control and optimization of power generation systems (e.g., wind power) is desirable but not required. Some experience with real-time control hardware is
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(https://atomicfilmslab.org) and will work closely with the computational, device, and simulation teams, as well as with the education and mentorship teams comprising ASWESOME. This position will inform
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innovation sectors are the future of health, the future of work, the future of environment, and the future of mobility. More than 70 professors from various TUM faculties cooperate within the framework
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innovation in Africa and aims to position itself among world-renowned universities in its fields The University is engaged in economic and human development and puts research and innovation at the forefront