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, pressure, composition, atmosphere) influencing these mechanisms. 2. Characterization and Analysis Characterize the compounds formed at different stages of the process using advanced techniques: - XRD (X-ray
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multiple length scales, combining tools such as electron microscopy, atom probe tomography, X-ray diffraction, and micro-mechanical testing. About the research project Bone is a remarkable material that
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structure and phase purity using X-ray diffraction. Prepare samples for TEM using plasma FIB. Analyze the microstructure, interface sharpness and defect distributions using TEM. Correlate MBE growth
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Chromatograph, Elemental Analyzer, Spectrophotometer, X-ray Diffraction Unit and any other shared teaching/research equipment. Train and oversee student use as needed. Repair and replace parts as needed. Maintain
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pulsed laser deposition (PLD), atomic force microscopy (AFM), advanced X-ray diffraction (XRD), and transport measurements (Hall effect and magneto-transport at low temperature). For deeper insights
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, including X-Ray diffraction, scanning electron microscope, atomic force microscopy Additional comments NA Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR137-JULGRO0-024/Default.aspx
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controlled atmosphere - master the usual characterisations of materials (X-ray diffraction, spectroscopies) - have knowledge of magnetism - fluency in English (oral and written comprehension and expression
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main contributor to the In-situ X-ray diffraction experiments performed for studying the formation of new silicides using both large volume presses such as multi-anvil and Paris-Edinburgh Presses
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characterisation of organic molecules is required. Prior experience with metal complexes, single crystal X-ray diffraction and/or appropriate computational techniques are all highly desirable. The post holder should
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in a vibrant and multidisciplinary and multinational environment (E) Experience in X-ray diffraction/imaging/spectroscopy techniques preferably synchrotron based (D) Experience in raising key issues