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for supervisory risk control. A theoretical foundation for risk visualizations to human supervisors for both single and multiple autonomous systems. To contribute to synthesizing the research results in
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monitoring and control. The research will design and evaluate hybrid AI + physics-based optimization frameworks that combine the accuracy and interpretability of physics-based optimization with the speed and
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of our competitive teams. Must be able to work efficiently in an autonomous manner, and be flexible with their hours as our competitive teams generally play in the evenings. This position earns $13.03/hour
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feedback Develop active learning and retraining pipelines to adapt to new consortia Implement event-triggered, autonomous experiment control to steer imaging in space and time Provide FAIR analytics
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minimum: Evidence of research output including publications, conference contributions and/or technical reports in the field. Theoretical background in quantum control and quantum optics, including
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in one or more of the following areas: Autonomous Systems Technology Platform Development – marine autonomous platforms, robotics, command and control. Environmental Sensor and Platform Development
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initiatives . In the Pharmacology & Physiology Department, this role will focus on the behavioral and electrophysiological basis of autonomic dysfunction in animal models of opioid induced respiratory
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centers on developing a framework for controlling a robotic arm equipped with a cardiac ultrasound probe and complementary sensors. The goal is to enable autonomous placement of the probe on predefined
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effective automated approaches for increasingly autonomous materials experiments (for further information, please check here ). This project provides you an excellent starting point for an academic career
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al. (2024) – Workload assessment in robotic teleoperation (Scientific Reports) https://doi.org/10.1038/s41598-024-82112-4 Ly et al. (2021) – Predictive haptic guidance in shared control (IEEE RO-MAN