101 computing-"https:" "https:" "https:" "BioData" "BioData" "BioData" "BioData" "BioData" positions at Nature Careers in United Kingdom
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on the lab: https://www.pdn.cam.ac.uk/directory/ewa-paluch and https://paluchlab.uk Fixed-term: The funds for this post are available for 2 years in the first instance. To apply online for this vacancy and to
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projects within the group of Dr Albert Cardona at the MRC Laboratory of Molecular Biology (LMB), as part of an overall programme aimed at studying the neural circuit basis of behaviour. Specifically, to map
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Postdoctoral Scientist Salary £42,694, per annum Fixed term, 2 years MRC Laboratory of Molecular Biology, Cambridge, UK Our research programme aims to understanding molecular mechanisms underlying
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of Molecular Biology (LMB), within a programme aimed at studying the neural circuit basis of behaviour. Specifically, to map the synaptic wiring diagram, or connectome, of whole brains, using machine learning
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have or be close to finishing a PhD in bioinformatics, artificial intelligence, biophysics, or computational biology. The ideal candidate will have demonstrated experience in developing and applying
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information: Interviews are planned for 16th of March 2026. For further information and details of how to apply, please visit our website http://jobs.jic.ac.uk or contact the Human Resources team on 01603
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computational approaches, on topics that complement and synergise with existing strengths in the Division. You will hold a PhD and understand the value of developing your highly original, independent line
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of triterpenoid bioactives, inspired by the chemical diversity of the Plant Kingdom. The post is part of a larger programme in the Osbourn lab on harnessing plant metabolic diversity for medicinal, agricultural and
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to immunotherapy. Despite its significance, this subtype cannot currently be reliably identified using genetic profiling alone. This Jules Thorne funded programme brings together a multidisciplinary team to develop
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between different neuronal cell types are organized and how this organization enables the computations they perform. To do this, we combine approaches from systems and molecular neuroscience and develop new