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to apply. Examples of Work Performed: Manage and operate the Macromolecular X-ray Crystallography Core Facility, including day-to-day oversight of X-ray diffraction instrumentation, crystallization robotics
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-hydrostatic pressure conditions. The large-volume presses available within the laboratory will be used to perform high-pressure experiments, while Raman spectroscopy and X-ray diffraction will provide direct
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Force Microscopy for monitoring polymer growth with nanometer scale resolutions, in-situ and post-mortem Small and Wide Angle X-ray Diffraction for the quantitative identification of different phases and
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, including powder diffraction and single-crystal diffraction techniques. Knowledge and experience of using novel AI-based tools for methodological development in modern X-ray crystallography. A strong affinity
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analysis, x-ray scattering and nanofabrication facilities. Approximately 1,000 researchers from across our campus as well as other academic institutions, industry, and national laboratories use
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of complex materials such as rocks. - Extensive experience with electron microscopy (e.g. SEM and EMPA), Raman spectroscopy (e.g. phase identification) and X-ray diffractometry (e.g. for crystal structure
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identification) and X-ray diffractometry (e.g. for crystal structure analysis). - Sense of responsibility and experience in handling highly reactive substances in the laboratory (e.g. mineral acids and ionic
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-crystal X-ray diffraction), and mass spectrometry. Thermal behaviour will be assessed using differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA), complemented by mass spectrometric
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Knowledge of (or willingness to learn about) automation and robotics for crystallization Demonstrated experience in a broad range of X-ray crystallography methods, such as crystallization screening
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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