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scanning probe microscopies, including atomic force microscopy (AFM), scanning electrochemical microscopy (SECM), and scanning electrochemical cell microscopy (SECCM) Systematic preparation and tip-based
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of single-entity electrochemistry of electroactive bacteria and redox liposomes with atomic force microscopy (AFM) measurements. Preparation of redox liposomes, culture of electroactive bacteria, single
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, atomic force microscopy) may be employed as well. The research project aims at acquiring molecular level understanding of catalytic processes using innovative materials concepts. The range of experimental
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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
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Christian RICOLLEAU, from the 'Advanced Electron Microscopy and Nano-Structures' team at the MPQ laboratory (https://mpq.u-paris.fr/means/ ), in close collaboration with Marc RESPAUD, from the "Surfaces
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merit Be fluent in English Must have an experience with scanning probe microscopies, in particular, atomic force microscopy Knowing basics of IR spectroscopy based on a photothermal effect (oPTIR, sSNOM
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Job Description Field of research: Single particle cryo-electron microscopy and X-ray crystallization of viral glycoproteins, immunogen design, virology, biochemistry and biophysics. Purpose
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dot synthesis Essential Functions Designs and builds a single molecule fluorescence lifetime microscopy setup Supports the design of a combined confocal microscope/atomic force microscope Publishes and
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reduced growth of several cancer cell lines when this regulatory pathway is blocked. The successful candidate will lead a research project aimed at studying the assembly mechanisms of nuclear pore complexes
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atomic force microscopy (AFM) in combination with fluorescence microscopy. The work includes cell culture, preparation of cells and isolated nuclei, AFM-based force and stiffness measurements, and