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obsolete. In Isogeny-Based Cryptography, we design, analyse and implement practical and highly compact schemes that are secure against quantum adversaries. In Public Key Cryptography, encryption schemes
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. The project will investigate how advanced and modern cryptographic protocols, such as zero-knowledge proofs, secure multiparty computation, homomorphic encryption, exotic signatures, and their post-quantum
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offer a promising platform for: In-line biosensing of key bioprocess variables (e.g., pH, reactive oxygen species, redox potential, ion concentrations), and Intracellular imaging and tracking
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-resolution imaging mass spectrometer. Calibrate sensitivity, quantification and spatial resolution using model samples/standards. Develop and validate and resonant laser ionisation pathways for selected
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) methods that will also be applied to assess key material inputs for a range of problems of interest. Multiscale X-ray imaging from the Diamond Light Source Synchrotron facilities will be used to guide both
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geometries, where imaging data are available, to test the transferability of atlas-based predictions. This project moves beyond single patient-specific studies to a systematic, mechanistic understanding of how
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systems? In this project, we will partially address these questions and study prototype LC systems e.g., LCs inside shells, cylinders, cuboids etc. within the celebrated Landau-de Gennes theory for LCs
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. Build a plaque-flow atlas to identify the plaque-risk associated with geometric features. Explore validation strategies using patient-specific arterial geometries, where imaging data are available