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mechanisms of chromosome organization, DNA repair, and cell division. We combine advanced microscopy, high-throughput sequencing, and biophysical approaches to address core questions in cell biology. IMBA is
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at the University of Oregon. CAMCOR hosts capital-intensive equipment for microanalysis, surface analysis, electron microscopy, semiconductor device fabrication, and traditional chemical characterization. Run by
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email listed above will not be accepted. Where to apply Website https://jobrxiv.org/job/cic-biomagune-bottom-up-cell-biology-lab-27778-phd-fell… Requirements Additional Information Work Location(s) Number
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as a part of a team 7. Strong presentation and communication skills 8. Good attention to detail Desirable criteria 1. Experience in electron and atomic force microscopy 2
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the connections between microtubule motors and their cargos. The scope of the project can involve in vitro reconstitutions, single-molecule assays, cryo-electron microscopy and cell biology approaches using induced
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research integrates in vivo gene therapy models, functional genomics, and super-resolution microscopy to uncover fundamental mechanisms of podocyte biology and glomerular disease. As a member of our team
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, Skills, and Abilities Strong knowledge of cryo-electron microscopy (3DEM) is required to curate and validate macromolecular structures. Experience with small molecule chemistry is a plus. Experience with
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IR spectroscopies Hands-on experience on TEM Experience with scanning electron microscopy A strong publication record The ability to properly report, organize and publish research data Good
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evolution reaction (OER), a major bottleneck in current electrolysis processes, and explore stabilization strategies based on protective layers. Study the electronic structure of the hybrid catalysts and
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project include: Performing advanced studies using state-of-the-art methods in X-ray imaging and scattering and electron microscopy to study porosity, intermetallic inclusions, solute segregates and