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Raman microscopy, this work will enable “greyscale” detection of molecular-level forces and provide new insight into early-stage damage processes in polymers. The research will focus on the synthesis
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will combine infection models and patient-derived samples with approaches spanning cell and structural biology, supported by advanced imaging techniques, including cryo-electron microscopy (cryo-EM) and
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scattering (SAXS) tensor tomography Develop correlative multi-scale analysis pipelines integrating SAXS tensor tomography and high-resolution X-ray tomography, and complementary electron microscopy data (in
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of electron spin pairs in chiral molecules created by light using diamond-based quantum sensors. Spin dynamics of these radical pairs are central both in biology and for quantum information science applications
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, cell biology, time-lapse microscopy and single cell analysis. You will work in a dynamic and highly interdisciplinary team including computer scientists, experimentalists and clinicians. You will be
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diffraction (XRD), scanning electron microscopy (SEM), X-ray computed tomography (XRCT) Expertise in designing and performing high-temperature and high-pressure in-situ experiments is advantageous. Fluency in
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techniques and/or plant genetics Motivation to work independently while contributing to a collaborative research environment Excellent communication skills in English Experience in Arabidopsis, microscopy