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central controller). ● Develop and validate calibration methods for new sensors for turbidity and existing commercial sensors. ● Explore high-frequency turbidity monitoring as a tool for assessing
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, the research group is seeking a new colleague to support the design of an enhanced framework that integrates high-level task sequencing with low-level sensor-fusion control to facilitate in-process adaptation
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interest in optical spectroscopic sensors to support industrial research and innovation projects in agrifood applications. Photonics technologies, particularly optical spectroscopic sensors, enable non
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(www.femto-st.fr ). This team involves members of the OHMS (https://teams.femto-st.fr//equipe-ohms/ ) [Time-Frequency Department] and MOSAIC groups (https://teams.femto-st.fr/MOSAIC/en ) [Micro-Nano Sciences
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sensor systems for monitoring is also planned. The work plan therefore includes: 1) Development of the innovative LSF profile and numerical simulation for parameterisation of the solution; 2) Development
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–robot interaction and ergonomics Automation and robotised workplaces (industry use-cases) Field robotics and harsh-environment robotics Predictive maintenance, sensor systems, multimodal monitoring AI/ML
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–robot interaction and ergonomics Automation and robotised workplaces (industry use-cases) Field robotics and harsh-environment robotics Predictive maintenance, sensor systems, multimodal monitoring AI/ML
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Posting Details Student Title Classification Information Quick Link https://chapman.peopleadmin.com/postings/38339 Job Number SE156824 Position Information Department or Unit Name Fowler School
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-on experience while ensuring all work is performed safely, efficiently, and in strict compliance with the National Electrical Code (NEC) and the Lab safety protocols. PPPL apprenticeship website: https
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for Precision Health Initiative (DAPHI) at UTSW, a major institutional effort that provides access to state-of-the-art computational resources, rich multi-modal datasets (clinical, imaging, omics, sensors), and a