24 computer-security "https:" "https:" "https:" "https:" "https:" "https:" "U.S" scholarships at University of Warwick
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. The PhD researcher will advance scalable wet‑etch fabrication methods to create next‑generation THz modulators with applications in security screening and early cancer detection. Terahertz (THz) radiation
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their skills and interests in this research area to https://warwick.ac.uk/fac/sci/eng/postgraduate/funding/ot_epsrc/app/ via the above 'Apply' button. If this initial application is successful, we will invite
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semiconductor technologies that underpin energy security, electrification, and grid resilience. Ultra-high voltage (UHV) power semiconductor devices — including IGBTs, thyristors (IGCTs/GCTs), and emerging
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Fully funded 4-year PhD studentship in Computational Chemistry Supervisor: Dr Zsuzsanna Koczor-Benda, UKRI Future Leaders Fellow (FLF) We are looking for a highly motivated and talented PhD
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Discipline: Engineering & Technology, Materials Science, Mechanical Engineering Qualification: Doctor of Philosophy in Engineering (PhD) This project is a collaborative research effort between Jaguar Land Rover and WMG (University of Warwick). The collaboration seeks to investigate and develop...
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: Imagine a surgeon operating remotely through a robot—what if the network slows at a critical moment? Even tiny delays can risk patient safety. This PhD project develops new AI approaches to predict network
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, allowing surgeons to operate on patients from different locations. However, communication delay remains a major safety challenge. Even small or unexpected delays can affect robot responsiveness and
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James Marco (james.marco@warwick.ac.uk ) Battery System Group Battery Systems Research | WMG | University of Warwick ) Battery Safety Centre Battery Safety Centre The ideal candidate will have a
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Centres Research area and project description: Artificial intelligence (AI)-based technologies are being adopted across various sectors at an unprecedented scale. However, the computing resources required
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that is still poorly understood. This project will develop advanced computational models to simulate a new imaging technique called electron ptychography, which can map magnetic fields in 3D at nanometre