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spectroscopies, as well as magnetic force- and scanning electron microscopy. You will collaborate closely with your theoretical partner in Utrecht, learning from theory to improve optical strategies and design
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resources and understanding how nanoscale structures and modifications can control the formation of spherical photonic materials and their optical properties? This PhD position may be for you! In this project
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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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lives? If so, please continue reading! Join Us! The Computational Science Lab is looking for an ambitious PhD candidate to bridge the gap between computational modeling and experimental biomedicine. You
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state-of-the-art magnetic imaging with advanced electron microscopy techniques. You will generate high-quality experimental datasets that form the basis for data-driven micromagnetic modelling developed
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PhD Position in Root Interactions with Suberin-Inducing Microbes Faculty: Faculty of Science Department: Department of Biology Hours per week: 36 to 40 Application deadline: 15 February 2026
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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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, stochastic dynamics, Monte Carlo and analytical methods) and its thorough validation using advanced experimental techniques (such as mass spectrometry, electron microscopy, radiochemistry and radiobiology
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using advanced analytical techniques, including TED-GC/MS (Thermal Extraction Desorption–Gas Chromatography Mass Spectrometry) to quantify microplastic mass, SEM-EDX (Scanning Electron Microscopy with