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through multi-modal sensing, autonomous UAV platforms, and advanced AI-based analysis. A central focus is the detection of defects in bridges and viaducts using X-ray, LiDAR, visual and acoustic data
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these techniques, X-ray fluorescence (XRF) imaging provides detailed information on the distribution of chemical elements across paint layers, giving unique access to pigments, mixtures, and underlying compositions
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diffraction and X-ray photoelectron spectroscopy will also be employed. This project is part of a large Dutch research consortium, including academia and industry. Your work will be embedded in our group’s
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characterization techniques including optical and electron microscopy, IR and Raman spectroscopy, MRI, and X-ray microtomography to track crystallization dynamics in real time. Analyzing mechanical degradation
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operando X-ray absorption and diffraction, will provide fundamental insight into the relation between material composition, structure, redox and phase behaviour, ionic conductivity, and battery performance
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a collaborative and international environment, which has access to unique experimental facilities such as MRI, X-ray, and ultrasound imaging, alongside high-performance computing resources