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to use 3D acquisition and processing tools (laser scanning/LiDAR and photogrammetry) and be proficient in producing geomorphological maps at different resolutions. The candidate should also have knowledge
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on cell cultures (2D/3D), applying interdisciplinary approaches from experimental biology and biophysics Development and optimization of experimental protocols for working with cell cultures, including
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on the PRISM-MTZ project funded by NERC. This project aims to quantitatively image the bulk structure and discontinuity topographies of the mantle transition zone (MTZ), to quantify trade-offs between
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excitation) in to the current waveguide chip settings. further develope microfluidics for controlled fluidic exchange allowing for kinetic measurements and to enhance data-driven image analysis to provide
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. This project aims to quantitatively image the bulk structure and discontinuity topographies of the mantle transition zone (MTZ), to quantify trade-offs between these and to deduce fluxes of heat and material
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models, for the analysis of high-throughput multi-omics datasets (especially single-cell and spatial omics), large textual corpora (e.g., scientific literature), and/or pathologic images. Our research
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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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, and RNA molecules within cells to developing novel approaches to 3D molecular structure determination to understanding how viruses hijack a cell’s machinery and alter its metabolome, the researchers in
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an opportunity to apply for a Postdoctoral Researcher post in Face Lab, relating to a craniofacial project and the application of dental data to the creation of a 3D digital avatar. You will require a
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characterization, mechanical testing, 3D microstructural analysis, finite element simulations, atomistic modeling, and thermal transport measurement techniques to advance mechanistic understanding and predictive