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; EPSRC Centre for Doctoral Training in Green Industrial Futures | Bath, England | United Kingdom | 3 months ago
(MS) to study reaction and drying kinetics. X-ray Diffraction (XRD) for crystalline phase identification. Scanning Electron Microscopy (SEM-EDX) for microstructural and elemental analysis. Numerical and
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the design of fundamentally new alloys by computational methods; production through arc melting, powder metallurgy or additive manufacturing; characterisation using advanced electron microscopy and x-ray
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facilities, including advanced microscopy, controlled environment growth rooms, genomics, proteomics, and metabolomics platforms. • Opportunities to work across model and crop species, including Arabidopsis
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calculations of well-characterized 2D materials, simulations of electron microscopy images, and machine learning methods to reconstruct the 3D atomic positions of materials from a 2D microscopy image. The
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). Access to cutting-edge facilities, including advanced microscopy, controlled environment growth rooms, genomics, proteomics, and metabolomics platforms. Opportunities to work across model and crop species
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including biolayer interferometry, flow cytometry, high-content live cell microscopy and (in 2024) confocal microscopy. From 2025 the team will host a UK unique automated glycan synthesis platform. The
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the MIB we have dedicated tissue culture and microbiology laboratories and a bioanalytical suite including biolayer interferometry, flow cytometry, high-content live cell microscopy and (in 2024) confocal
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Transmission Electron Microscopy). To support this, the Rolls-Royce UTC has excellent facilities in laser beam processing, process monitoring, and metrology/materials inspection to support this research project
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composites (year 2) -Composite damage analysis using, micro-tomography scan, Thermography, C-scan Scanning Electron Microscopy analysis (year 3) - Exploration of high/hyper-velocity impact resistant composites