16 structures-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "Imperial College London" positions at University of Bath in United Kingdom
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to engage, influence and work effectively with a range of internal and external stakeholders, are encouraged to apply. Completed applications should be uploaded at https://PLusPortal.PerrettLaver.com quoting
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applications, please visit https://PLusPortal.PerrettLaver.com quoting reference 8288. Protecting your personal data is of the utmost importance to Perrett Laver, and we take this responsibility very seriously
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About the role The Centre for the Analysis of Motion, Entertainment Research and Applications (CAMERA – https://camera.ac.uk ) specialises in the research, capture and portrayal of motion, bringing
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engagement [https://www.bath.ac.uk/guides/international-policy-engagement/ ] through our Bath Policy Engagement Academy - https://www.bath.ac.uk/campaigns/the-bath-policy-engagement-academy/ Further
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independently and as part of a team. Excellent organisational and time management skills are also important as you will be working on multiple projects. Learn more about our Faculty and its Departments here: http
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an informal discussion, please contact the Faculty Operations & Projects Manager Jess McCallum (e-mail: jm2995@bath.ac.uk ) Learn more about our Faculty and its Departments here: https://www.bath.ac.uk
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, healthcare or a similarly structured organisation. You will bring a proven ability to manage budgets and financial administration, including monitoring expenditure and producing management information
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that explore new 3D chemical space, to AI-guided synthesis, flow automation and direct-to-biology screening. By coupling Bath’s strengths in synthetic chemistry, chemical and structural biology, and advanced
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. Experience evaluating empirical research, including extracting data from research articles and assessing methodological rigour or study quality (e.g., using structured checklists). A strong commitment to open
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to disrupt cancer-relevant protein–protein interactions. The project will focus on the design, synthesis, and biological evaluation of structurally constrained peptide macrocycles that access bRo5 chemical