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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
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an add-on to our work; it is our entire operating model. However, we have learned that meaningful co-production takes time, strategy, and structure. Many of our members have experienced trauma
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insights into organisational and public behaviour can inform effective regulation and citizen or community engagement. You will adopt a multi-phase mixed-methods design, including semi-structured interviews
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Biomedical Engineering. The successful candidate(s) will join the world-leading Advanced Nano Materials, Structures and Applications (ANMSA) Group, a hub for innovation in the development of novel micro- and
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chemicals with different structures and functional groups. There are currently major gaps in our knowledge of how different PFAS occur and behave in the environment. For example, we do not know all
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will sit within the Department of Applied Health Sciences and will support the delivery of the NIHR Research Professorship awarded to Professor Joht Singh Chandan (NIHR306365, https
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)-fluorinated substances (PFAS). PFAS are a diverse set of chemicals with different structures and functional groups. There are currently major gaps in our knowledge of how different PFAS occur and behave in
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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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, transport measurements, structural determination through x-ray and neutron scattering, magnetic measurements and nanofabrication. We target a deliberately broad selection of properties to measure, usually
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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