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of wildtype and Bdf1-mutant C. albicans strains. The project will also involve developing high-resolution 3D X-ray imaging approaches to investigate morphotype-dependent changes in the nuclear and subcellular
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spectra of other stars and, hence, to investigate the solar-stellar connection for the corona. The project involves the analysis of archival solar imaging and spectroscopic X-ray data. The project will be
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to further improve and extend MLLs as part of a large project to image, understand and ultimately control electron dynamics in molecular systems. To do this, we are combining concepts from X-ray microscopy
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multispectral and hyperspectral UVvisible imaging and synchrotron X-ray analysis to map photoluminescent signatures, analyze elemental composition (heavy metals, rare earth elements, etc.) and the chemical
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Massachusetts Institute of Technology | Cambridge, Massachusetts | United States | about 2 months ago
observations of galaxy clusters, with a focus on XRISM data to measure the line-of-sight ICM velocity structure; •Characterization of X-ray imaging detectors and supporting electronics, including testbed design
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advanced correlative microscopy techniques, combining coherent X-ray diffraction imaging (CXDI) and STED super-resolution microscopy. The researcher will: • Develop new multimodal imaging strategies; • Work
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The performance of X-ray microscopy has improved significantly over the last decade, enabling synchrotron-based X-ray imaging to resolve individual transistors in modern semiconductor devices. As the industry moves
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The performance of X-ray microscopy has improved significantly over the last decade, enabling synchrotron-based X-ray imaging to resolve individual transistors in modern semiconductor devices. As the industry moves
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The performance of X-ray microscopy has improved significantly over the last decade, enabling synchrotron-based X-ray imaging to resolve individual transistors in modern semiconductor devices. As the industry moves
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experience in radio data analysis, optical/IR spectroscopy, space-based imaging analysis (optical/X-rays), and other time-domain science are encouraged to apply. Resources include programs with HST, Chandra