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of the research will be as follows: To develop new growth methods for high light yield perovskite scintillators To study morphology and crystalline quality of perovskite crystals using Surrey’s new single crystal X
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adapt quickly to new methods and technologies will be highly valued. How to apply Applications should be submitted via the Civil and Environmental Engineering PhD programme page. In place of a research
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discipline is expected, with an interest in applying computational and AI-based methods to interdisciplinary biomedical research. Experience or interest in machine learning, programming, or computational
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-leading research programme investigating key nuclear reactions for both fundamental physics and applications. The aim of the project is to establish new methods to measure properties of Auger electron
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the average values of the widths and spacings between two adjacent resonances. This energy range is called the “unresolved resonance region” (URR). Current computational methods treat the resonances in the URR
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in instrumenting bridges and assessing the condition of the bridge using direct measurements. These methods are categorised as non-destructive testing techniques, but they can be costly considering
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This studentship is fully-funded by an EPSRC Industrial Doctoral Landscape Award in partnership with AWE plc. The successful applicant will be welcomed into our world-leading research programme
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Quantum materials underpin key emerging technologies in quantum computation, sensing, and low-energy electronics (e.g. topological insulators, topological superconductors, spin liquids, superfluid
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for applicants with a degree in Computer Science, Mathematics, Physics, or Engineering. Prior experience in AI is necessary. Prior experience in tomographic imaging and medical physics would be advantageous but
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PhD Studentship: Robust quantum control for quantum error correction The development of fault-tolerant quantum computing is one of the most coveted aims of quantum technology. It will bring about a