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nanotubes, enables the exploration of thermodynamic processes at the nanoscale. Carbon nanotubes serve as exceptional nanomechanical resonators due to their low mass, high stiffness, and quality factor
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. The project involves the combination of the use of cultured cells and vertebrate animals in particular zebrafish to understand newly-uncovered reactive metabolite signalling pathways of importance in well
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exciting opportunity to join the dynamic research group on Digital Ethics and Defence Technologies, contributing to pioneering work at the forefront of AI and ethics. The role focuses on innovative research
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signalling and alleviate dementia-related symptoms in patients with Parkinson’s disease and other neurological conditions. The post-holder will play a key role in leading research using transcranial ultrasound
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to manage your own academic research and contribute intellectually to projects, as well as writing manuscripts and presenting research findings at scientific meetings. Application Process Applications
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to work. Application Process Applications for this vacancy are to be made online via www.recruit.ox.ac.uk and Vacancy ID 180710. You will be required to upload your curriculum vitae and a supporting
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recruitment to trials of student-specific digital interventions. You will receive training and supervision from Professor Kate Saunders and will work closely with other members of the research team including
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We are seeking to appoint a talented and ambitious Postdoctoral Research Assistant to join the Bacterial Pathogenesis and Innate Immune Signalling group, based at the Sir William Dunn School
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Location: South Parks Road, Oxford We are seeking to appoint a talented and ambitious Postdoctoral Research Assistant to join the Bacterial Pathogenesis and Innate Immune Signalling group, based
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and temperature on overall mechanical response, and will have the opportunity to field high-speed imaging, digital image correlation, laser velocimetry, and related techniques to enhance the type and