110 data-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "U.S" Postdoctoral positions at University of Oxford
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transcytosis and tropism in both healthy and disease contexts. The work will generate human-relevant data on BBB permeability, receptor expression and transcriptomic signatures that will directly inform AI
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to independently plan and manage a research project, including a research budget, and act as a source of information and advice to other members of the group on scientific protocols and experimental techniques
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, aerosols, and their interactions, utilising satellite-based remote sensing. Potential areas of emphasis include cloud tracking and the analysis of data from the innovative EarthCARE satellite mission in
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also have experience of structural biology methods, in particular cryogenic electron microscopy and data processing. Enthusiasm for working in a laboratory environment, a pro-active determination to
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opportunities as this is a network grant including external collaborators. Please see the below 'Job Description' for further details on the responsibilities and selection criteria, as well as further information
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in machine learning and/or computer security and Experience working with LLMs or agent-based systems. Informal enquiries may be addressed to Philip.torr@eng.ox.ac.uk For more information about working
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We have a new and exciting Postdoctoral Research Assistant position available within the CRC-STARS spatial biology team, analysing and interpreting spatial transcriptomic data. You will work on the
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to Prof Daniel Eakins (daniel.eakins@eng.ox.ac.uk ). For more information about working at the Department, see www.eng.ox.ac.uk/about/work-with-us/ Only online applications received before midday on 2nd
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Description' for further details on the responsibilities and selection criteria, as well as further information about the university and how to apply. The post is full time for a fixed term until 31st December
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the molecular structural dynamics and embedded chiral information in redox-active polycyclic aromatic hydrocarbons influence the emergence of novel photoluminescent properties. While the majority of objectives