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are met. Undertake these responsibilities in the project: Develop and deploy multimodal AI algorithms for fire, smoke, and hot-work detection by fusing optical, thermal/infrared, LiDAR, RADAR, and gas
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discipline that directly impacts important technological and societal topics such as thermoelectric energy harvesting and next-generation gas sensors. The project has access to state-of-the-art supercomputing
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, layout and application of deep submicron technologies Embedded systems design and algorithms for embedded software systems. Design of micro-electro-mechanical systems including sensors, amplifiers, mixed
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hosts well-equipped labs with on-site capabilities comprising vehicle-mounted sensors, drone operations, on/off-road robotics, high-precision geo-localisation, bio-signal data collection, X-ray security
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resolved single photon technologies and optical fibre sensors to tackle clinical/biomedical challenges and other real world applications. Our work is primarily experimental, developing measurement systems
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This extremely multi-disciplinary research theme looks at different aspects of navigation including positioning and localisation, path finding and routing algorithms, sense of direction, human computer interaction
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functional outcomes. In parallel, you will develop new sensors for intracellular potassium concentration leveraging AI based protein design algorithms. Techniques used are Biomolecular NMR spectroscopy and