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controlled in-house cleaning and process validation. Background / motivation In soft X-ray Scanning Transmission X-ray Microscopy (STXM), the zone plate is the main focusing optic and a critical, high-value
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of an acquired immune response. We welcome applications from PhD graduates who are interested in this or a related field, particularly those who may bring a new technology, and/or advanced microscopy skills and/or
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microscopy to generate new insights into how cells coordinate and repair DNA double-strand breaks? Using baker’s yeast, Saccharomyces cerevisiae , as a model organism, the project is designed to uncover novel
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; work in the public interest. • Access to modern infrastructure (vacuum chamber, sensors, microscopy, robotics). Employment Type Full-time (100% FTE), fixed-term for 36 months. Ideal for candidates
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Master Thesis in Physics or Materials Science: Remanent phase shifter based on memristive technology
microscopy (AFM), X-ray reflectometry (XRR), and ellipsometry, along with electrical characterization of memristive switching behavior. Individualized training in state-of-the-art laboratory techniques, hands
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/j.micres.2025.128082 ). This project aims to dissect the biology of this novel group of jumbophage using a combination of genetics, molecular biology, proteomics, epifluorescence microscopy and electron
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facilities. Lab website: https://www.unmc.edu/pathology/faculty/bios/ng.html The ideal candidate will have a strong background in cellular and molecular biology, malaria parasitology, demonstrated success as a
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role in establishing the University Research Facility in Materials Characterization and Device Fabrication, which includes a Materials Research Centre, a Centre for Electron Microscopy, an Atomic
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and moved by laser-based optical tweezers in a closed action–perception loop. Your work will help transform current observation-only live-cell imaging microscopy into actively controllable, automated
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Sorbonne Université SIS (Sciences, Ingénierie, Santé) | Paris 15, le de France | France | 20 days ago
étudiera la croissance et la structure de l'étain par microscopie à effet tunnel et diffraction des rayons X de surface sur synchrotron. Des résultats préliminaires ont déjà été obtenus sur les surfaces Ag