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Compatibility (UK Home Applicants Only) Project: Three-Channel Interview Assessment: Responsible Multimodal AI for Fair and Evidence-Based Hiring Commercially Funded Doctoral Studentship in Collaboration with IMS
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verified. The most direct way to measure this self-coupling is to study the production of Higgs boson pairs (di-Higgs), particularly through the HH(bbγγ) channel, which offers a good compromise between the
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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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research group investigating synaptic function and calcium channel signaling in health and disease. Our research combines neuronal cell culture models, molecular and biochemical approaches, fluorescence
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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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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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29.07.2026, Academic staff The project aims to develop, implement, test, and demonstrate physical-layer security strategies that exploit wireless channel characteristics, multi-antenna transmission
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and hardware security assurance for embedded systems by combining advanced side-channel analysis, fault-injection techniques, AI- and machine-learning-assisted analysis, robustness evaluation, and
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for channel estimation, beamforming, and real-time network optimisation. The goal is to enable adaptive 6G systems with improved reliability, energy efficiency, coverage, and resilience in complex and dynamic
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investigate AI-driven approaches for channel estimation, beamforming, and real-time network optimisation. The goal is to enable adaptive 6G systems with improved reliability, energy efficiency, coverage, and