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Field
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. publications, presentations, grant submissions). • Experience using advanced quantitative methodologies. • Coursework and training in quantitative methods (e.g. SEM, Growth Modeling, etc). Professional
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expected to: Design advanced electrode and electrolyte materials for aqueous battery applications, and employ various physical characterization techniques (OEMS, EQCMD, XRD, SEM/TEM, XPS) to investigate
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or other silica-based materials); Experience in characterization of porous materials using various techniques such as BET, TGA-DSC¬MS, PXRD, SXRD, FTIR, NMR, SEM, XPS, etc. and technical skills
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using various techniques such as BET, TGA-DSC¬MS, PXRD, SXRD, FTIR, NMR, SEM, XPS, etc. and technical skills on the manipulation of most of those instruments; Experience in the use of academic databases
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obtained using advanced techniques (UV-Vis, HPLC, 1H and 13C NMR, SEM, FTIR, XRD, etc.). Applicable Legislation: The grant is awarded under the Research Fellowship Holder Statute, approved by Law nº 40
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(Considered an Advantage) - Background in mineralogy - Understanding of different ore types and rock-forming minerals - Good command of Swedish, both written and spoken - Analytical techniques, such as SEM, XRD
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engineering background in mechanical design, manufacturing and control circuit development; microstructure characterization capability with SEM and EBSD Desired Experience: Knowledge and skills in mechanical
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Diffraction (XRD) and Rietveld refinement for phase analysis. Electron microscopy (SEM, TEM, EDS) for morphology and elemental distribution. Spectroscopic techniques (XPS, Raman, FTIR) for surface chemistry
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least some of the following analytical techniques such as FTIR, Raman spectroscopy, SEM, DSC, TGA, or related methods. A strong publication record relative to career stage Excellent written and spoken
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execute experimental welding trials, including parameter selection, tooling setup, and sample preparation. Perform microstructural characterization (optical microscopy, SEM/EDS, EBSD) and mechanical testing