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multimodal sensors, wireless connectivity, edge intelligence, and robotic actuation. This platform will enable system-level validation of new approaches in dynamic physical environments and provide a basis for
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multimodal sensors, wireless connectivity, edge intelligence, and robotic actuation. This platform will enable system-level validation of new approaches in dynamic physical environments and provide a basis for
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, robotics, and related engineering fields. Applicant profile We welcome candidates with a strong background in electronics and particularly encourage applicants with research activities related to sensors
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Robotic-human Orchestration with Wearables for manufacturing: Twin Transition Through Tactile Teaming. As a PhD researcher, you will contribute to the development of a wearable co-pilot system for assisting
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dynamics, control algorithms and sensor integration can be designed as a coherent system to improve speed, range, maneuverability, response time and operational robustness while also having underwater
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researcher will investigate how AI embedded in physical entities, such as robots, vehicles, or sensors, form representations of space, motion, and context through continuous, multimodal interaction with
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engineering, system integration, electrical engineering, machine elements, robotics, sensors, mechatronics, and advanced actuator design. As associate or full professor, you are expected to contribute
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world-leading fundamental and applied research within communication, networks, control systems, AI, sound, cyber security, and robotics. The department plays an active role in transferring inventions and
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within communication, networks, control systems, AI, sound, cyber security, and robotics. The department plays an active role in transferring inventions and results into applications in close collaboration