309 developer-"https:"-"https:"-"https:"-"Robert-Gordon-University" positions at NIST
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at few hPa. We are developing an alternative truly atmospheric pressure approach that can be applied to a broad class of samples and be implemented in conventional laboratory-based instruments, as
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Description A new capability has been developed where sheet metal can be multi-axially strained while stresses in various directions within the plane of the sheet are measured using x-ray diffraction
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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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sample preparation equipment (including cross-sections) and also an ability to fabricate prototype devices using electron lithography. The current topics of interest include the process development and
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. This research aims to develop state-of-the-art imaging techniques and determine cell states and phenotypes based on quantitative and SI-traceable chemical measurements, which will boost the measurement assurance
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the world. With this production system, we are looking to augment our ability to rapidly answer science questions using the aggregated data volume. Additionally, we seek to develop and deploy new autonomous
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the viability of Rydberg atoms to realize the Kelvin in this way requires measuring blackbody-induced transitions through either selective field ionization or fluorescence detection. It also requires developing a
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microbial cultures by traditional and emerging analytical and genomic techniques; and understanding the mechanisms and impacts of microbial evolution and horizontal gene transfer, particularly within
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-ray energy-dispersive spectroscopy (XEDS) spectral images integrated over thousands of frames with "on the fly" drift correction. We seek a creative researcher to work with us to develop and apply