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NIST only participates in the February and August reviews. This research opportunity focuses on developing and improving the state-of-the-art methods for analysis, modeling, and simulation
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[email protected] 301.975.4133 Description NIST has led the Genome in a Bottle Consortium to develop widely-used benchmark variant calls for seven human cell lines [1]. GIAB has primarily used methods
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measurement traceability to the SI (unit Bq) by expanding on traditional gas counting capabilities and developing new methods to meet outstanding challenges. In particular, we seek to develop absolute assay
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of multiscale methods to measure how the marcoscopic behavior of novel graphene devices arises from the microscopic distribution of nanoscale properties involves multiple NIST research efforts linking STM, STS
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301.975.4663 Description We measure neutron beam intensities for thermal and cold neutron beams, and develop methods to advance the accuracy of these measurements toward a goal of ±0.1 % for neutron beam
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devices (used for inspection of packages and cargo) and the detection of contraband shipments. Another active area of investigation is the use of muon anti-coincidence or other methods to distinguish
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[email protected] 301.975.6737 Description This research seeks to characterize the degradation of fiber-reinforced polymer (FRP) composite materials bonded to concrete and improve test methods used to assess
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for calibration in advanced imaging methods. At NIST, advances in “drop-on-demand” inkjet technology are poised to meet this need. Advanced gravimetric techniques allow the precise deposition of picoliter
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benchmarks for genome sequencing methods [1]. In addition, these cell lines have been used as a well-characterized background DNA in over 50 commercial products. These cell lines, as well as induced
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using novel analytical approaches. Specifically, this research will focus on (1) development of laboratory methods to produce controlled-size micro- and nanoplastics; (2) development of field-flow