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Field
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artificial intelligence (AI) sys- tems, integrating LLMs with external tools and memory components to execute complex reasoning and decision-making tasks. These agents are increasingly deployed in domains
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electron microscopy (TEM) will be considered advantageous. Documented knowledge in processing of metals and alloys, preferably solidification microstructure formation will be considered an advantage
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, etching). - Experience in structural, morphological, and surface characterisation (SEM, TEM, EDS, XRD, Raman spectroscopy, AFM, XPS). - Understanding of structure–property–performance relationships in
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, CINTRA,…). Supervision / Contacts Clarisse Furgeaud (50%), scientific expertise: epitaxy and magnetron sputtering, in situ and real-time monitoring, structural and chemical characterization by TEM
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epitaxy-pulsed laser deposition (MBE-PLD) technique. Careful study of the structure of this film by XRD, XPS, and TEM (collaboration with Prof. M Seibt / Dr. T. Meyer, University of Göttingen) and analysis
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the School of Engineering at UoE, with access to: Advanced electrochemical testing facilities Battery fabrication labs Materials characterisation (XRD, SEM/TEM, spectroscopy) You will also work closely with
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SFI FAST: PhD position in Microstructure/texture evolution during extrusion of scrap-based Aluminium
, using advance equipment like SEM, TEM, P-FIB, etc. A strong academic record, with excellent analytical and problem-solving skills. Experience in using relevant modelling methods for material or process
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). The research combines reactive long-term flow-through experiments and deformation tests with advanced analytical techniques, including ICP-OES, XRD, XRF, EMPA, TEM, and X-ray CT. Resulting hydraulic, geochemical
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structural stability of RNA, isolated or complexed with different compounds, using microscopy techniques (SEM and TEM) and Circular Dichroism; 3) Characterization of the biological activity of RNA through