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Field
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ellipsometry, atomic force microscopy, and scanning electron microscopy is required. Knowledge of atomic layer deposition and materials for energy storage applications is highly desirable. The successful
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microscopy, scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and X-ray diffraction (XRD). Main Responsibilities Study plasma propagation and discharge dynamics in non-thermal plasma
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DTU Physics and DTU Construct. Our group is a global leader in the field of metals. We invented the synchrotron-based imaging technique Dark-Field X-ray Microscopy (DFXM) and previously 3D X-ray
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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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microscopy to generate new insights into how cells coordinate and repair DNA double-strand breaks? Using baker’s yeast, Saccharomyces cerevisiae , as a model organism, the project is designed to uncover novel
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molecular, cellular, and microbiological research techniques and procedures including molecular cloning, protein purification, cell culture, transfection, Western blot, RT-qPCR, ELISA, confocal microscopy
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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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the corresponding equipments) for microscale imaging of life in rocks (e.g., FISH-guided laser microdissection) or of microorganism-mineral interactions (e.g., SEM, CLSM-Raman spectroscopy, FTIR microscopy, SNOM
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of investigations of planetary materials, including studies in geochronology, petrology, isotope geochemistry, planetary spectroscopy, microscopy, and magnetism. Possible research areas
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background in neuroscience, neurophysiology, or molecular biology • Experience with EEG recordings, behavioral testing, viral vector delivery, or advanced microscopy Supplemental Qualifications • Ability