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work on the following: Design of an efficient multi-level data acquisition, transport and synchronization digital infrastructure focusing particularly on overall phase coherent operation of the overall
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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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. Conventional experimental techniques such as dilatometry, optical and electron microscopy, electron backscatter diffraction and x-ray diffraction with Rietveld refinement are available at the lab and can be used
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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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10 Apr 2026 Job Information Organisation/Company Vrije Universiteit Amsterdam (VU) Research Field Physics » Optics Researcher Profile First Stage Researcher (R1) Application Deadline 8 May 2026 - 21
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techniques, including X-ray diffraction, XPS, SEM-EDX, and in situ Raman and IR during electrocatalytic experiments. The performance of the selected materials will be investigated in the lab and in a pilot
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the Dutch Research Agenda (NWA). It brings together 10 Dutch universities, over 50 academic researchers, and 30 societal partners in an ambitious inter- and transdisciplinary collaboration. Our shared mission
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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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metasurface pixels are patches filled with 2D arrays of scatterers (‘meta-atoms’) precisely tailored for diffractive outcoupling and wavefront shaping at the same time. Each metasurface pixel receives light
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with other PhDs, Postdocs, and EngDs working on legal and regulatory innovations, transformation pathways, new treatment technologies, and digital twins. Research topic You will investigate