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In the Professional Service Robots - Outdoor research group we develop autonomous mobile robots for a variety of outdoor applications, such as agriculture and forestry. The focus is on
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interventions and respective associated environmental impacts. Use of in situ/robotic technology for the spatial and event-driven investigation of benthic processes, their kinetics and areal quantification
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Robotik Pflege und Weiterentwicklung der Laborinfrastruktur: KI-Anwendungen, Soziale Robotik Umsetzung von empirischen Studien mit dem Sozialen Roboter Beratung von Studierenden bei technischen Fragen
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PhD/Postdoc position in trustworthy data-driven control and networked AI for rehabilitation robotics
-robot-teams, haptic assistance, cyber-physical systems, and infrastructure systems. While our core competence is control engineering, we have some interdisciplinary collaborations with the fields
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In the Professional Service Robots - Outdoor research group we develop autonomous, mobile robots for a variety of outdoor applications, such as agriculture and forestry. The focus is on
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agricultural vehicles and robots, tractor-implement automation, communication technologies for vehicles, navigation, guidance and planning, positioning systems, model-based control of mechatronic systems, drives
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integrated with a robotic head) for cell contact and impedance measurement Analysis and preprocessing of EIS data Integration and deployment of an existing ML model (e.g., as a Python module, API, or embedded
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Technology, Mechatronics, Robotics, Systems Engineering, Applied Mathematics, Technomathematics, Computer Science, Engineering Informatics, Theoretical Computer Science, Physics Description Description
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Your Job: Translate the manual biofunctionalization methods of our flexMEA biosensor into an automated hardware process using a state-of-the-art micro-pipetting robot Streamline the workflow
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to develop an autonomous platform for organoid culturing and analysis to address key challenges in organoid-based experiments. This interdisciplinary project will leverage robotic systems for high-throughput