64 structures-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "Imperial College London" research jobs at University of Oxford
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travel and Season Ticket travel loans. All applications must include a CV, Supporting Statement/Cover Letter. For further guidance and support, please visit https://www.jobs.ox.ac.uk/how-to-apply. Any
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on the application process at https://www.jobs.ox.ac.uk/application-process The closing date for applications is 12:00 midday on 16 January 2026 It is anticipated that interviews will take place on 5 February 2026
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University pages on the application process at https://www.jobs.ox.ac.uk/application-process The closing date for applications is 12:00 midday on 16 January 2026 It is anticipated that interviews will
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Applications are invited for a Postdoctoral Research Associate with expertise in optical spectroscopy, structural characterisation techniques and modelling applied to next-generation semiconductors
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, with a particular focus on predicting nuclear magnetic resonance (NMR) parameters and using these predictions to inform structural models. The successful candidate will parameterise and validate machine
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quantification and mapping of the high-dimensional correlation structure across multiple traits, quantification of trait variation that arises from new mutations, development and applications of analysis methods
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absorption analyses of photocatalyst function, including operando photoinduced absorption studies, and their correlation of materials structure, spectroelectrochemical analyses and hydrogen evolution
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cavitation detection, imaging, and monitoring. You will be responsible for engaging in reactor design, construction, development, and characterisation. You will also be expected to integrate a cavitation
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for 2 years You will lead and manage your own research within the project, developing and applying advanced electronic structure and molecular simulation methods. The work will involve transition-metal
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characterisation using multi-modal operando datasets. Practical experience in the design, construction, and operation of experimental setups for imaging-based investigation, of battery behaviour under in situ