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microstructural examination using electron probe microanalysis. Where to apply Website https://www.sckcen.be/en/thesis-and-internship-topics/sintering-kinetics-and-me… Requirements Research FieldEngineering
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of gaseous fuels remains a major challenge. Inspired by nature’s own strategies where organic molecules are used instead of hydrogen gas to store, transport, and deliver electrons in the form of hydride (H
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and processes science and engineering, it covers: materials, metallurgy, plasmas, surfaces, nanomaterials and electronics. By 2025, IJL has 259 permanent staff (34 researchers, 133 teacher-researchers
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Reference Number: 1113829 About the Role: This position is responsible for managing the X-Ray Diffraction (XRD) Facility within the John de Laeter Centre (JdLC) at Curtin University. The JdLC is a
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the ultrafast science of quantum materials using advanced soft X-ray spectroscopy techniques at a high-repetition-rate X-ray free-electron laser (FEL) source. The installation and commissioning of a THz
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are performed using the so called “Coherent Diffraction Imaging” approach. It allows a 3D imaging of isolated objects smaller than 6 μm in size. It has been used to study “objects” ranging from exoskeletons
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cells) - Synchrotron measurements (e.g., diffraction, tomography, inelastic x-ray scattering, and/or absorption spectroscopy) - Measurements at X-ray Free Electron Laser (XFEL) facilities - Pulse-echo
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analysis of scanning electron microscopy, electron backscatter diffraction, and energy dispersive spectroscopy. Skilled in the interpretation and analysis of transmission electron microscopy and X-ray
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synthesised in situ using a state-of-the-art pulsed laser deposition system. Key characterisations include X-ray diffraction for structural properties and temperature-dependent magneto-optical properties
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morphological characterization will be carried out using electron microscopy, X-ray diffraction, and IR spectroscopy, to establish correlations between structure and performance. The formulations developed and