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’, adopting distinct structural forms each tailored to functionally specific downstream targets. Initial cryo-electron microscopy (cEM) studies show that MRFAP1 forms a remarkable dodecameric ‘nanocage’ which
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irradiated materials. This work will be under the supervision of Prof. Enrique Jimenez-Melero, UKAEA Joint Chair in Materials for Fusion (https://www.birmingham.ac.uk/staff/profiles/metallurgy/jimenez-melero
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the Department of Applied Health Sciences and will support the delivery of the NIHR Research Professorship awarded to Professor Joht Singh Chandan (NIHR306365, https://fundingawards.nihr.ac.uk/award/NIHR306365
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al., 2014). These structures determine the conditions in which their offspring develop and, therefore, are fundamental to breeding outcomes. Although plastics have been incorporated into the nests
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Decarbonising the building sector is vital for net-zero targets. In 2022, buildings produced around one-third of global energy-related CO₂ emissions—26% from operations and 7% from construction
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to predict environmentally relevant adverse outcomes and support next-generation chemical safety assessment? To achieve these goals, the project will develop thyroid organoids with follicular structure and
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of Applied Health Sciences and will play a central role in delivering the NIHR Research Professorship awarded to Professor Joht Singh Chandan: (NIHR306365, https://fundingawards.nihr.ac.uk/award/NIHR306365
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datasets from Kepler, TESS, and PLATO to reassess trends in exoplanet occurrence, structure, and evolution. Methods and Tools The project will involve: • Bayesian inference (hierarchical models, posterior
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structural properties of biomacromolecules. Likewise, it can also alter the activity and expression of proteins. However, there are many experimental challenges to be solved, including temperature stability
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Buried Infrastructure Facility (NBIF) is a new £27.2M facility (https://www.birmingham.ac.uk/nbif). NBIF is a national and international facility enabling large-scale research on topics such as buried