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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 physics
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partially ordered systems. Particular use is made of X-ray and neutron diffraction, cryo-EM, and a wide range of other biophysical techniques. The group is located in close proximity to the MAX-IV and ESS
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of the obtained materials using elemental analysis, nuclear magnetic resonance (RMN), ICP-OES, infrared spectroscopy (IR), ultrared-visible spectroscopy (UV-Vis) and Raman spectroscopy, X-ray diffraction, X-ray
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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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diffraction) for structural analysis. - ICP-MS for elemental composition. - SEM/EDX and TEM for morphology and element distribution. - TGA/DTA for thermal analysis and stability. - XPS for surface chemical
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optical microscopy (OM), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), X-ray diffraction (XRD), and optical profilometry Working knowledge of vacuum system pumps, controls
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, including X‑ray diffraction (XRD), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), scanning electron microscopy (SEM), Raman spectroscopy, Fourier transform infrared (FTIR
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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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tools, including X-ray diffraction, fluorescence polarisation microscopy and muscle mechanics on human skeletal muscle samples. This is a full time on campus post (35 hours per week) and you will be
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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