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have an MSc in Biology or Biochemistry with prior knowledge in electron microscopy (cryo-EM or cryo-ET). We also welcome applicants with an MSc degree or equivalent in a field connected to computational
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diffraction imaging modalities - topotomography, dark-field X-ray microscopy, and Bragg coherent diffraction imaging - has emerged over the past decade that can resolve 3D defect architectures and strain fields
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using a combination of cell culture (inhibitor studies), molecular-biology and cell biological (fluorescence microscopy) assays. Job Responsibilities Interact with the PI to set goals, design experiments
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-Microscopy, in particular high-throughput approaches In vivo / ex vivo approaches: -Cognitive behavioral testing in mice (Y-maze, Barnes maze, EPM) -Analysis and interpretation of behavioral data
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optical microscopy, X-ray diffractometry, Raman spectroscopy, ICP-MS, and X-ray fluorescence. Spatial distribution will be mapped using GIS and transport and dispersion processes will be modeled
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imaging skills (epifluorescence as well as confocal microscopy, fixed cells as well as life cell imaging) You have experience in protein analysis techniques You have knowledge of DNA & RNA techniques You
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scientific infrastructure and platforms (including light, electron and cryoEM microscopy, NMR, mass spectrometry, molecular biology and genomics) and a large community of 350 postgraduate research students
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well as other microscopy, cutting-edge next generation sequencing and genomics, flow cytometry and an endowed, world-class plant research facility. New faculty will work with outstanding colleagues and graduate
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. For more information see: https://medicine.iu.edu/faculty-labs/witczak Successful candidates will have recently completed PhD training, possess a strong background in type 2 diabetes, metabolism, and/or
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, within platforms for quantum-gas microscopy and Rydberg atom array experiments. Responsibilities: Development of a narrow-linewidth laser system at 689 nm, including slave laser and injection-locking