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Field
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technologies. The goal of this project is to find a reliable packaging technique for silicon chips with embedded microfluidic channels that does not involve the use of glue or elastomer seals. The project will
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beam (FIB) imaging - can be combined with AI to reconstruct nanoscale chip structures and infer functional behaviour from physical layouts. The project addresses the challenge of extracting reliable
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other markets, driving further innovation in healthcare and related technologies. The goal of this project is to find a reliable packaging technique for silicon chips with embedded microfluidic channels
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sits at the intersection of AI Safety and Data-Centric AI. We aim to make large-scale ML more reliable, transparent, and aligned with human values. We are specifically interested in: Data-centric AI
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reliability. These trends, together with wide-bandgap converters and fast-switching voltage waveforms, impose increasingly severe electrical stresses on winding insulation. The challenge is particularly
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research. be flexible, reliable, and able to work effectively both independently and as part of a team. communicate effectively and be motivated to disseminate research through scientific publications and
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Background Robotic manipulation has achieved remarkable success in structured industrial environments; however, reliable autonomous manipulation of small, soft, and deformable objects in confined spaces
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to build and characterise these DNA devices. The project will also explore optimisation methods to improve reliability, scalability, and performance in complex nucleic-acid-based systems. The student will
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healthcare and related technologies. The goal of this project is to find a reliable packaging technique for silicon chips with embedded microfluidic channels that does not involve the use of glue or elastomer
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evidence generation and reassessment. You will focus on how international HTA bodies anticipate it will shape their activities in the coming years. Assessing the extent to which GenAI tools can reliably