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PhD Studentship: Nanopore Technology for Rapid and Accurate Measurement of Antibiotic Concentrations
conditions and characterise the dynamic range and sensitivity of the nanopore sensors Develop multiplexing strategies for simultaneous detection of multiple antibiotic classes Perform proof-of-principle
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interactions and dynamic protein states are important for cellular identity. Aberrations in proteins drive oncogenic signalling and disease progression. The goal of the Oncode Accelerator Growth Fund project is
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prerequisite (i.e., familiarity with linux, bash, conda, python). Experience in molecular dynamics simulation, protein chemistry or phylogenetics would be major assets. An interest in developing wet lab skills
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PhD studentship: Exploring Confined Molecular Transport for Next-Generation Fluidic Innovations (Students World-wide) Award Summary 100% fees covered, and a minimum tax-free annual living allowance
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). Design and fabricate patterned surfaces optimised for enzyme immobilisation. Assess synergistic antibiofilm efficacy under static and dynamic (flow-based) biofilm models. Apply advanced microscopy, protein
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for the first time to previously inaccessible microsecond dynamics (link). Further boosting the enhancement will require entirely novel designs that exhibit multiple resonances provided by e.g. plasmonic
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of molecular transport. This PhD project will focus on creating confined interfaces to investigate the physics of both static and dynamic molecules. Further details: gtr.ukri.org/projects?ref=MR%2FX03660X%2F1
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materials with engineered catalytic sites, as part of the HyCARB project. The successful candidate will join a dynamic research team with access to facilities for materials synthesis and parallel catalytic
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. The Health System encompasses Duke University Hospital, Duke Regional Hospital, Duke Raleigh Hospital, Duke Primary Care, Duke Home and Hospice, Duke Health and Wellness, and multiple affiliations. Be You. The
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thermodynamics. • Investigate molecular recognition mechanisms, including lectin clustering and complex stoichiometry, supported by mass photometry and molecular dynamics simulations. • Integrate biophysical and