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Postdoctoral Appointee - Investigation of Electrocatalytic Interfaces with Advanced X-ray Microscopy
both within and outside the laboratory. Preferred Knowledge, Skills, and Experience Hands-on experience with liquid transmission electron microscopy (TEM). Knowledge of electrocatalysis, especially CO₂RR
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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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assays, flow cytometry, high dimensional data acquisition and analysis and confocal and/or in vivo microscopy. Job Description Primary Duties & Responsibilities: Information on being a postdoc at WashU in
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laboratory facilities for culturing as well as experimental work on microalgae in temperature-controlled rooms, advanced microscopy and imaging labs as well as a molecular lab. The post doc will collaborate
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of artificial intelligence, microscopy, and quantitative biology, translating cutting-edge research into robust tools that are used by researchers worldwide. Our work contributes directly to enabling reproducible
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techniques of cryo-electron microscopy (cryo-EM), small angle X-ray scattering (SAXS), single-molecule force spectroscopy (SMFS), biochemistry, mutational analysis, cell culture, activity assays, et cetera
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) molecule fluorescence and other techniques, such as smFRET. Structural biology using electron microscopy, such as cryogenic electron microscopy (cryo-EM) and tomography (cryo-ET). The postdoc will be central
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confocal and fluorescence microscopy techniques, molecular techniques (PCR, Western blot, RNA silencing), and autophagy research methods Analysis and interpretation of experimental data and deriving new
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-electron microscopy–based approaches. More information about the laboratory can be found at: https://www.cryo-em.psu.edu/ . The postdoctoral scholar will contribute to ongoing projects to define structural
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. To achieve this, the project will use state-of-the-art cell biological approaches from FACS/microscopy via gene-editing to mass spectrometry and will build on our existing collaborations with cryo-EM labs