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organized between the two teams. References : Fourier Analysis of Interference Scanning Optical Probe Microscopy. E. Soubies and W. Bacsa. IEEE Transactions on Computational Imaging, vol. 11, 2025. Optics
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of analytical techniques related to optical microscopy, XRF, FT-IR, on selected territorial samples and materials representative of the various research themes in the DSSBC (for example: ceramic materials
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with experience in various fluorescence microscopy-imaging systems. Candidates must have effective oral and written communication skills. APPLICATION PROCEDURE: Apply online at https://uva.wd1
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community.Together, we’ll create meaningful impact at a scale few others can match. Connections working at The Ohio State University More Jobs from This Employer https://main.hercjobs.org/jobs/22089491/microscopy
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Job Description OVERVIEW: This position would manage day-to-day operations of the Keck Microscopy Center. The RSE would provide imaging analysis to center users and help support research projects
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Academic Job Category Faculty Non Bargaining Job Title Research Associate – High-Resolution Electron Microscopy and Spectroscopy Department Research | Quantum Matter Institute | Faculty of Science
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The University of British Columbia (UBC) | Vancouver UBC, British Columbia | Canada | about 7 hours ago
: UBC Vancouver Campus - Vancouver, BC, Canada Time type: Full time Job Title: Research Associate – High-Resolution Electron Microscopy and Spectroscopy Department: Research | Quantum Matter Institute
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Academic Job Category Faculty Non Bargaining Job Profile Research Associate Job Title Research Associate – High-Resolution Electron Microscopy and Spectroscopy Department Research | Quantum Matter
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Job related to staff position within a Research Infrastructure? No Offer Description Your team SoftiMAX is a soft X-ray beamline focussed on spectro-microscopy and coherent imaging techniques, with 2
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ESPCI Ecole supérieure de physique et de chimie industrielles de la ville de Paris (PSL) | Paris 15, le de France | France | 22 days ago
la lumière (généralement ~200 nm). Parmi ces techniques, les approches de microscopie de localisation de molécules uniques (Single Molecule Localization Microscopy - SMLM) reposent sur la capacité à