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Department This position is part of a new Advanced Research + Invention Agency-funded project, subject to contract negotiations, part of the Accelerating Adaptation programme (see https
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tissue electrical polarisation influence cell–matrix interactions during lung fibrosis progression. The postholder will develop bioelectronic in vitro platforms to precisely control matrix deformation and
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(http://ori.ox.ac.uk/labs/goals/) within the Oxford Robotics Institute (ORI), as part of the EPSRC Programme Grant in Embodied Intelligence (https://embodiedintelligence.web.ox.ac.uk) and other follow
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Award . Role This position is part of a new Advanced Research + Invention Agency-funded project, subject to contract negotiations, part of the Accelerating Adaptation programme (see https://aria.org.uk
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on the research activity of the lab is available at: https://www.rinaldi-lab.com/ . The successful candidate will be involved with study design and experimental conduct. The post holder will work at the newly built
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Research Associate/Fellow in Root–Soil Interactions and Molecular Biology School of Biosciences, University of Nottingham Project: UKRI ‘GROUNDBREAKING’ Applications are invited for a Research
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interactions between fibroblasts and neutrophils that drive immune-mediated inflammatory diseases such as inflammatory bowel disease (IBD), rheumatoid arthritis (RA), and hidradenitis suppurativa (HS
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including emerging digital public infrastructure. A combination of methods - archival, data sets and interview based will be essential. The interaction of ideas and institutions with public perception
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balance: coherence thrives far from external influences, while proximity and strong interactions with targets optimise their detection. Molecular spins offer a compelling balance of such demands. At ~1 nm
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Keystone project on Addressing socio-technical limitations of Large Language Models (LLMs), particularly for medical and social computing https://adsolve.github.io/ ). The current role involves augmenting