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Field
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environments. Analyze products for impurity content through techniques such as XRD and SEM-EDS to ensure that products meet sponsor requirements. Communicate effectively with supervisors, peers, and Laboratory
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the major equipment required to characterise the organic molecules and catalysts generated as part of this project (XPS, XRD, TEM/SEM, mass spectrometry, NMR, etc.). The E2P2L (Eco-Efficient Products and
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(SEM, DRX, XPS, etc.) · Experience in PVD and/or ALD is a plus. · High-level scientific and technological track record related to material chemistry and/or Li-ion battery is a plus
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mindset. Desirable: Experience working with industry partners or on industry-focused research. Knowledge of advanced characterisation techniques (SEM, EDX, XRD, tribology). Experience with data-driven
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with structural and chemical characterizations using state-of-the art techniques (SEM, DRX, XPS, etc.) Experience in PVD and/or ALD is a plus. High-level scientific and technological track record related
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(UV-Vis, IR, Raman…), microscopies (TEM, SEM), electrochemistry, and other relevant physico-chemical techniques. Chemical process development: optimization of reaction conditions, analysis of yield and
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will also use focussed ion beam milling scanning electron microscopy (FIB-SEM) to prepare infected cells for in situ cryo-ET. The resulting tomographic data will be analysed by machine-learning assisted
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, impedance analyzers, gas flow systems, and temperature-controlled test stations. Perform materials and surface characterization (e.g., SEM, TEM, XRD, XPS, BET, Raman, FTIR). Analyze and interpret
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on the development and implementation of new workflows for the mineralogical and geochemical characterization of ore materials, using combined µXRF-mapping, SEM-based automated mineralogy, and laser ablation ICP-MS
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, including cryo-FIB/SEM lamella preparation and/or cryo-ultramicrotomy, is a strong advantage; prior exposure or clear motivation to learn these techniques is also highly valued Basic