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, the candidate will benefit from expert supervision from research leaders in social science and IT, and from entering a PhD with a pre-existing structure. Finally, the candidate will benefit from being part of
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possess translational symmetry, the role of structure and symmetry in glasses is not established. This research programme involves the development of new x-ray and electron diffraction-based methods
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Focus The PhD candidate will undertake research including: Experimental characterisation of aerosol generation, plume structure, droplet-size distribution, velocity fields and entrainment in a jet
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I supervise computational projects in electron microscopy imaging for investigating materials at atomic resolution. Some projects centre on analysing experimental data acquired by experimental
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existing clinical or methodological strengths, this opportunity is structured to adapt to your unique career goals. Research Areas and Project Design: Candidates have the flexibility to align with existing
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-intelligence-controlled atom-by-atom synthesis of functional nanomaterials Theoretical and numerical modelling of the electronic structure of functional low-dimensional nanomaterials (with Prof Nikhil Medhekar
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For over a century, X-rays have been used to visualise the internal structure of opaque objects, driving major breakthroughs in healthcare, industry, and scientific research. Conventional X-ray
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, transcription, travel, and conference attendance. Second, the candidate will benefit from expert supervision from research leaders in social science, and from entering a PhD with a pre-existing structure. Finally
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use imaging surveys at X-ray, optical, infrared and radio wavelengths to measure the emission from stars, active galactic nuclei, warm dust, atomic hydrogen and relativistic electrons. Spectroscopic
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-resolved structural and chemical changes during minerals-to-metals processing, including aqueous, electrochemical, thermal, and hybrid pathways relevant to extraction, refining, recycling, phase