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via operando liquid-phase transmission electron microscopy (LP-TEM). Your tasks: Self-motivated and independent planning, execution, and analysis of research in the scope of operando electrocatalysis
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interdisciplinary, incorporating approaches from bacterial genetics and cell biology, genomics, metagenomics, confocal microscopy, mouse models, and pathogen evolution. Please check our lab website for more
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rearrangements and ligand-induced conformational changes. You will integrate this platform with X-ray Crystallography and Cryo-Electron Microscopy (Cryo-EM) to determine high-resolution, atomic-level structures
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a combination in vitro biophysical measurements, high resolution x-ray crystallographic analyses, electron cryo microscopy (cryoEM), and cell-based fluidics studies. The group has access to a range of
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, SOPs, lab manuals, training documents and regulatory materials using an electronic lab notebook (Benchling). Maintain the biospecimen inventory housed in -80C freezers using Lockbox LIMS and freezer
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Instrumentation, Laboratory Techniques, Method Development, Microscopies, Molecular Biology, Molecular Microbiology, Pathogenesis, Quality Control (QC), Recordkeeping, Researching, Software Program, Working
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., electron microscopy, spectroscopy, surface analysis) You will be motivated to work in a multidisciplinary research environment, collaborating with researchers across engineering, materials science, and
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-up, consumables, equipment and staff. We also offer free access to our well-supported in-house facilities, which include electron microscopy, nuclear magnetic resonance, X-ray crystallography, light
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: initially one year, renewable Appointment Start Date: Sept-Oct 2025 Group or Departmental Website: http://cegelskilab.stanford.edu (link is external) How to Submit Application Materials: Please email the PI
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will be characterized using structural techniques (XRD, BET), electron microscopy (TEM, SEM), UV-Vis absorption spectroscopy, and photo- and radio-luminescence. This thesis will be conducted in close