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to reconstruct the tree-of-life on Earth, it allows us to reveal how biological function has evolved and is distributed on this tree, and it is the foundation that enables us to use model organisms
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Full Time (37.5 hours per week) rm Contract for up to 3 years About the role Dr. Frank Bürmann leads a research group investigating the molecular mechanisms of chromosome remodelling. The team employs
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(Central Oxford). The post is externally funded and is fixed-term to the 30th September 2026. The integration of electronic and mechanical degrees of freedom in quantum devices, particularly using carbon
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fixed-term for 12 months. The project start date is 1st January 2026. The RESILIENT PoC will focus on the engineering of mechanically durable and optically efficient coatings/films/paints, which may be
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therapies. This role offers a unique opportunity to investigate the mechanisms of therapeutic resistance in glioblastoma and contribute to the development of more effective treatment strategies. Our research
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photo-responsive synthetic cells containing protein machinery. The project involves the synthesis of synthetic transport systems for amino acids, photochemistry and fabrication of responsive synthetic
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potential to uncover new mechanisms governing the fundamental biological process of gene expression. The planned research, funded by an HFSP Research Grant, is a close collaboration between the Wrobel Lab
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and molecular mechanisms that act within these sites, and to determine how these events lead to a balanced immune response in different conditions and physical constrains imposed by each organ
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BBSRC grant awarded to Prof Francesco Licausi. The work is to be conducted in the Life and Mind Building, Department of Biology, University of Oxford. The postholder will work on the molecular mechanisms
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Applications are invited for an exceptional Postdoctoral Scientist to the join the group of Prof. Claus Nerlov to study blood cell development, with particular emphasis on mechanisms of HSC ageing