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tracking. • Quantitative image analysis to assess spatial dynamics of gene transfer. Impact and Outlook This project will: Establish proof of concept for surface-based AMR control. • Inform the design of
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Microfluidics and lateral flow assay engineering Translational diagnostics and AMR-focused assay development Digital image analysis and Python-based data processing The project includes opportunities
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PhD Studentship: Nanopore Technology for Rapid and Accurate Measurement of Antibiotic Concentrations
their use in field or point-of-care settings. This project aims to develop portable, nanopore-based sensors for the rapid and accurate quantification of antibiotic concentrations in environmental and clinical
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-based surface hopping (X-SH). Applications in collaboration with experimental groups aim to understand at atomistic resolution how electronic excitations (``excitons”) dissociate to charge carriers in