307 web-programmer-developer-"https:"-"https:"-"https:" positions at NIST in United States
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, providing a direct measurement of an organism’s phenotype. At the Hollings Marine Laboratory (HML) in Charleston, SC, we employ metabolomics (and plan to incorporate lipidomics) as a useful technique to
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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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, and light-matter interactions. This research opportunity is focused on developing compact, integrated cavity optomechanical devices that push the state of the art in terms of sensitivity and accuracy
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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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valuable qualitative and quantitative information that can be used to develop and validate fundamental deformation models. We have also used submicrometer X-ray beams at the Advanced Photon Source
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methods, and digital signal processing and network modeling. Other research topics are High-Tc superconductive Josephson junction array waveform synthesizers and compact cryogenic design for the development
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to molecular structure alterations that result from mutations, misfoldings, or other contaminants. Research will focus on developing NMR as a robust spectroscopic approach for obtaining structural 'fingerprints
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@nist.gov 301.975.4310 Description The Fire Research Division of NIST’s Engineering Laboratory develops and maintains a computational fluid dynamics software package for modeling building and wildland fires
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properties. While our focus is on industrially important fluids, such as fuels and refrigerants, we also welcome proposals that would yield data primarily intended for model development, such as studies
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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