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About the Project A fully funded PhD scholarship is available at UCL Electronic & Electrical Engineering (4 years, home tuition fees covered, stipend provided). Exceptional international candidates
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, numerical methods, molecular biology methods (e.g. cloning, PCR) and bacterial plasmid mating. How to apply This project is offered as part of the Centre for Doctoral Training in Engineering Solutions
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, and biotechnology. Research Environment: The project is a collaboration between UCL Chemistry, Pharmacy, and Chemical Engineering departments. Students will work across multiple labs, benefiting from a
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Engineering, Physical Sciences, and Mathematical Sciences. Why chose UCL? UCL has a history of academic excellence and is consistently ranked among the world's top universities, with many of our faculties
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healthcare. Research Environment: The project is based in UCL’s Department of Biochemical Engineering, a collaborative and interdisciplinary research environment. The student will be co-supervised by experts
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PhD Studentship: Nanopore Technology for Rapid and Accurate Measurement of Antibiotic Concentrations
beneficial but not required Interest in AMR diagnostics and translational biotechnology How to apply This project is offered as part of the Centre for Doctoral Training in Engineering Solutions
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The student will work across UCL Mechanical Engineering and RNOH, benefiting from a collaborative environment and access to state-of-the-art facilities. Research Environment: The project is hosted in
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disinfectants. With antimicrobial resistance (AMR) on the rise, there is an urgent need for non-antibiotic strategies to prevent and control biofilm formation on medical devices. This PhD project proposes a novel
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challenging. This project aims to develop an ultrasound-assisted nanoparticle-based drug delivery system for targeted, controlled release of antimicrobials within these hard-to-reach oral microenvironments. By
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within a highly collaborative setting, benefiting from access to the UCL Automation Network and cutting-edge facilities for structural and biophysical analysis. The project is well-positioned to deliver