67 computer-"https:"-"APOS-UFFICIO-CONCORSI-DOCENTI" "https:" "https:" "https:" "https:" "Dr" "UCL" positions at Newcastle University
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PhD studentship in Computer Science: From Formal Requirements to Specification-based Automated Testing for Safety-Critical Medical Device Software Certification Award Summary 100% fees covered, and
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) and Edge Computing are undergoing a major transformation. Systems that once relied heavily on cloud-based processing and passive data collection are evolving into distributed networks of intelligent
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PhD studentship in Computer Science - Dynamic Validation of AI Systems in Digital Twins: A Real-Time Safety Framework for Critical Infrastructure Resilience Award Summary 100% fees covered, and a
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Supervisor: Dr Rehmat Ullah , Internal Co-supervisor: Dr Husnain Sherazi , External Co-supervisor: Dr Ahmed MA Sayed Eligibility & How to Apply For more information on eligibility and how to apply please visit
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accountably. This is where you come in. Your mission Working at the intersection of privacy research and real-world engineering, you'll design and build a computational stewardship engine—an autonomous agent
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integration. About This PhD This PhD programme is part of a prestigious £8M EPSRC Programme Grant on Advanced Integrated Motor Drives (AIMD), a major research initiative launched in 2025. You will work on the
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, publications and certification-related artefacts. Supervision Environment You will be based in Newcastle University’s Computing AMBER-group, focusing on safety-critical software, medical systems, simulation, and
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the Stability of Vortices in Planetary Atmospheres and Oceans (Studentship code MSP113; Programme code 8080F) The rapid growth of supermassive black holes at high redshift (Studentship code MSP114; Programme code
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- 23:59 (UTC) Country United Kingdom Type of Contract Temporary Job Status Part-time Hours Per Week 37 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the
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models, in-house laboratory tests in a wind-wave-current flume (https://research.ncl.ac.uk/amh/ ) and numerical methodology to quantify biofouling impacts on flow-induced vibration phenomena, structural