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or destroy Pol II on genes. The project will combine protein purification, biochemical reconstitution and cryo-electron microscopy to dissect the underlying mechanisms, complemented by cellular approaches in
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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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: Manipulation of ultrashort laser pulses from an industrial ytterbium laser for high-order harmonic generation and photoemission electron microscopy of nanostructured samples. The project's goals, based on a
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coatings. Key responsibilities include: Developing and optimizing advanced surfaces using state-of-the-art thin film technologies Characterizing prepared thin films using scanning electron microscopy and
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device; 7) Experience in characterizing the protective properties of multiphase materials and composite coatings using light, scanning electron microscopy and other advanced techniques enabling accurate
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models to specialized microscopy tasks and develop algorithms that align image level embeddings across modalities (e.g., fluorescence ↔ electron microscopy ↔ brightfield ↔ …). In collaboration with other
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Dortmund, we invite applications for the Research Group Analysis of Microscopic BIOMedical Images (AMBIOM): PhD Candidate (m/f/d) The position is part of the DFG-funded project: ComplexEye - a 96/384-well
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Pol II on genes e.g. https://doi.org/10.64898/2025.12.04.692291 ; https://doi.org/10.1016/j.molcel.2024.11.024 . The goal of this project is to understand the molecular mechanisms by which several newly
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: Developing and optimizing advanced surfaces using state-of-the-art thin film technologies Characterizing prepared thin films using scanning electron microscopy and surface wetting methods Analyzing and
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ABIF can be found at: http://www.mcgill.ca/abif. Primary Responsibilities 1. Technical Development & Innovation Lead and document quality control (QC) workflows for ABIF imaging systems, including