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IM2NP (Institut Matériaux Microélectronique Nanosciences de Provence) UMR CNRS 7334 Aix Marseille Université | Marseille, Provence Alpes Cote d Azur | France | 8 days ago
caractérisation ex situ de la structure de grains (EBSD - Electron BackScatter Diffraction) au laboratoire MSMP (Laboratoire Mécanique, Surface, Matériaux et Procédés, Aix-en-Provence) et des techniques pour
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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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fluorescence (XRF), x-ray diffraction (XRD), scanning electron microscopy (SEM), and isotope geochemistry Conducting analyses using ICP-MS, ICP-OES, XRF and colorimetric techniques in consultation with
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diffraction and pair distribution function analysis, infrared spectroscopy, and µ-Raman spectroscopy. Chemical mapping and phase speciation will be evaluated by fluorescence and X-ray absorption spectroscopy
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. The material characterization tasks of the researcher span from advanced transmission electron microscopy ((S)TEM) to light microscopy and includes structure analysis by electron and x-ray diffraction (ED and
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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
outcomes. Molecular beam epitaxy (MBE) growth of GaAs nanowires on patterned Si/SiO₂ substrates. Structural analysis by electron microscopy (in situ TEM, electron diffraction, zone-axis indexing). Automated
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& acylation),Polymerization, TLC, distillation, LLE, Titrations, UV-Vis, GCMS, LCMS, HPLC,MALDI-TOF, X-ray diffraction, FTIR, Chimera software for molecular docking. Essential Duties and Responsibilities
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data from the European XFEL facility at DESY. Project website: https://www.mpinat.mpg.de/628848/SM-Ultrafast-XRay-Diffraction Your profile Eligible candidates have strong skills in computational
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solutions for pressing societal challenges (e.g. communication, artificial intelligence, climate protection, health, etc.) through modern electronic & photonic technologies. The work covers the entire
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evolution reaction (OER), a major bottleneck in current electrolysis processes, and explore stabilization strategies based on protective layers. Study the electronic structure of the hybrid catalysts and