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plasma-modulated plasma accelerators (P-MoPAs). The successful candidates will undertake research into the underlying physics and operation of plasma-modulated plasma accelerators (P-MoPAs), advanced
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behaviour of so-called yield stress fluids, which keep their shape like solids at low loads, yet flow like a liquid at larger loads. One possible focus could be on the dynamical process whereby a material in
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diversity. Application Process You will be required to upload an up-to-date CV and a supporting statement as part of your online application. Your supporting statement must clearly demonstrate how you meet
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to consider these as part of your application. Informal enquires about the role are welcomed and should be directed to Dr Catherine A. Bradley on cab80@cam.ac.uk . For questions on the application process
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Catherine A. Bradley on cab80@cam.ac.uk . For questions on the application process, please contact the School's HR Team on musichr@admin.cam.ac.uk . The closing date for applications is midnight (BST
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Catherine A. Bradley on cab80@cam.ac.uk . For questions on the application process, please contact the School's HR Team on musichr@admin.cam.ac.uk . The closing date for applications is midnight (BST
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to consider these as part of your application. Informal enquires about the role are welcomed and should be directed to Dr Catherine A. Bradley on cab80@cam.ac.uk . For questions on the application process
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to hear from you! Application Process: To apply, please submit a CV and covering letter detailing your suitability, on the application portal. Please refer to the job-role requirements in your cover letter
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sports clubs Diversity Committed to equality and valuing diversity. Application Process You will be required to upload an up-to-date CV and a supporting statement together with your research statement as
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Robert Weatherup in the Department of Materials at the University of Oxford. Although near-Ambient Pressure XPS has enabled operando measurements of surface chemical processes in recent years, it is