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Field
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of biomechanics, robotics, imaging, and biology, within a stimulating interdisciplinary ecosystem. - main mission: To develop and integrate a robotic platform for multiscale biomechanical testing of murine
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for lifelong multi-robot operation, using state-of-the-art parametrisations of stabilising controllers, data-driven control and multi-agent reinforcement learning. The postholder will also provide guidance
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information about our research group can be found at: https://autonomousrobots.nl/ Job requirements We are looking for a candidate with: A PhD degree in Robotics, Control, Aerospace Engineering, Mechanical
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excellence in both fundamental and applied research, spanning fields such as neuroscience and cognition, humanoid technologies and robotics, artificial intelligence, nanotechnology, and material sciences
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crop monitoring and decision-support systems for Controlled Environment Agriculture (CEA). This project focuses on the development, validation, and integration of non-destructive plant sensing
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | about 3 hours ago
. Description: Characterization of the near Earth space environment, extending to Lunar, cis-lunar and near-Mars environments, is critical for the health and operation of both crewed and robotic missions as
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learning, Computer vision, and Autonomous Robots is desired. The successful applicant will work on various projects on robotics and computer vision, controls, and machine learning and their security
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crop monitoring and decision-support systems for Controlled Environment Agriculture (CEA). This project focuses on the development, validation, and integration of non-destructive plant sensing
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 14 days ago
robotic exploration. The work will examine how external drivers (e.g., solar energetic particles, coronal mass ejections, solar radiation) and internal drivers (e.g., atmospheric composition and dust, plume
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motor control for bioinspired robotics. The main focus of this project is how neural circuits in the motor system of the fly, Drosophila melanogaster, orchestrate limb movements and autonomous behavior in