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operational foundations for embodied AI and robotics. About the project Robotics is undergoing a revolution in physical intelligence. Running parallel to this revolution is an urgent need to address robust
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for anaerobic digestion, and enzymatic saccharification to produce biogas and value-added products. In addition, parallel analysis of governance, permitting, and policy requirements will be conducted to ensure
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through participatory design sessions with nurses, integrating the computational models (developed by another PhD candidate working in parallel on sound modelling) with user experience requirements, while
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constraints such as electromagnetic interference (EMI), thermal stability, and mechanical durability. In parallel, the project will refine and optimize existing machine learning models for fault detection and
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vendors, each with their own management interfaces, data formats, and access restrictions. In parallel, AI-driven services are increasingly deployed in a distributed fashion, with inference spread across
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bachelor and master studies Different projects can start at different times. Ideally at least one candidate would start in the Fall of 2025 (earliest starting date is October 2025), other projects