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Field
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fraction of the user base is studying batteries and battery materials. This X-ray Diffraction – Computed Tomography (XRD-CT) postdoctoral research position is hosted by the Division of Solid Mechanics
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, Raman spectroscopy, X-ray diffraction, thermal analysis, etc.), electrode fabrication, cell assembly and electrochemical testing. A full suite of electron microscopy (SEM and TEM) and surface analysis
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unique opportunity to engage directly with MAX IV's full-field X-ray imaging and tomography activities. These span the established tomography capabilities at DanMAX and ForMAX, together
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, is a materials science beamline specialising in X-ray diffraction and full-field imaging techniques. The beamline serves a very wide user community, spanning physics and chemistry to medical science. A
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strong reductants, sealed ampoules, inert-atmosphere transfer. Crystal growth of molecular or ionic solids, and single-crystal X-ray diffraction. Powder diffraction: indexing, Pawley and Rietveld
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(or related field). The employment is on full-time for 2 years and 10 months, with expected starting date 1 September 2026 or according to agreement. Last application date is July 31st, 2026. Project
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particularly valuable. Documented experience in materials characterization, such as NMR spectroscopy, mass spectrometry, X-ray diffraction, X-ray photoelectron spectroscopy, vibrational spectroscopy, and
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microcomb-based multiwavelength sources for high-capacity transmission and investigate their integration with silicon-photonic transmitter and receiver devices. The research will include coherent wavelength
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X-ray computed tomography (CT) in both interrupted and in situ test setups. Initial studies will be carried out using in-house microCT facilities and later extended to synchrotron experiments in
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-field fracture modelling, contact and micromechanics of particulate or composite materials, mechanical testing and X-ray tomography, and programming (e.g. Python, C++ or Fortran). An innovative mindset