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a range of characterization techniques, including X-ray diffraction, electron microscopy, X-ray photoelectron spectroscopy, as well as various electrochemical measurements, with opportunities
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microscopy and x-ray diffraction techniques; mechanical testing using macro/micro-mechanical methods and failure investigation; and environmental behaviour under oxidation/corrosion and irradiation damage
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temperature. This will be achieved using a variety of solid-state, high-pressure and solvothermal synthesis techniques, and the resultant products will be characterized through X-ray and neutron diffraction as
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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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of their properties. The primary responsibilities include synthesizing Crystalline inorganic compound, their characterization with x-ray diffraction and spectroscopic methods, as well as analysis of their magnetic and
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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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radiation beamline hands-on experience in X?ray microscopy techniques, X?ray diffraction or X?ray fluorescence working knowledge of image processing e.g. using machine learning German skills For further
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spectroscopy, powder X-ray diffraction and single-crystal X-ray diffraction. This project will commence with a synthetic laboratory component, where the Amgen Scholar will develop skills in air-free Schlenk line
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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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: experience in neutron and X-ray single-crystal diffraction techniques (data collection, data reduction/structural refinement) and knowledge of programming languages, such as Python, would be desirable. Each