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and microprobe that uses a magnetic-sector mass spectrometer and special ion optics to produce either a direct, mass-resolved microscope image or a scanned microprobe image of the sample surface; and (2
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of potential reference materials for improved measurements of protein aggregates and particulates. Methods used in our studies include microflow imaging, light obscuration, coulter counting, size exclusion
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, internal dynamics, materials physics and chemistry is of primary importance in determining the processing, performance and viability of advanced ceramic components such as relevant to solid oxide or hydrogen
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state lighting and water purification), and field emitting ion sources for mass spectrometry. We are also working on the design and fabrication of prototype nanowire electronic devices such as FETs. We
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to advance our capabilities for characterizing gene delivery systems at the single-particle level. There will also be opportunities for interested candidates to develop advanced data processing techniques and
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laboratory and a shared BSL2 laboratory, as well as image processing software and computational imaging tools. We have developed a network of clinical partners both in the immediate area and other states. The
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function; (2) explore available algorithms for image post-processing to recover original information about the visual environment; (3) explore scientific applications of new imaging methods; and (4) develop
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to thin-film characteristics and defects. key words Images and image processing; Magnetic fields; Magneto-optics; Microscopy; Optical imaging; Scanning electron microscopy; Thin films; Eligibility
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images. However, the current limitations of desktop computers in terms of memory, disk storage and computational power, and the lack of image processing algorithms for advanced parallel and distributed
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301.975.4579 Description As the demand for high resolution, high content imaging increases, the cost and challenges of acquiring, storing, processing, and analyzing today’s very large imaging data sets are even