329 embedded-system-"https:"-"https:"-"https:"-"https:"-"Cardiff-University" positions at NIST
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within the Quantum Measurement Division is investigating graphene metrology towards two goals: (1) to develop near-room-temperature graphene quantum Hall devices and other possible quantum electrical
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but inaccurate, leading to overconfidence in position data.This fundamental issue is becoming more important as localization microscopy matures, requiring not only novel methods but also reliable
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NIST only participates in the February and August reviews. Knowledge of fluid thermophysical properties is vital for applications in industry, metrology, and environment. The tools of statistical
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of sound is a property that yields very powerful data for developing fluid equations of state (EOS), and we have two such instruments for liquid and vapor-phase measurements covering a combined temperature
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dynamics of these systems at equilibrium conditions, the time dependent or transient structures of complex soft matter materials are significantly under explored, in particular at nanometer length scale
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quadrupole mass spectrometers with electrospray and nanospray ionization, (2) four liquid chromatography/mass spectrometry systems with electrospray and atmospheric pressure chemical ionization, (3) two MALDI
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material properties and evolves as a function of deformation. Accurate measurement of the crystallographic texture is the key to understanding how the material will respond during forming of parts
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spectra and to suggest new avenues for experimental study. As the number of atoms in a molecule increases, calculations become correspondingly expensive. One means of addressing this problem is through
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@nist.gov (303) 497 5235 Andrew J. Slifka andrew.slifka@nist.gov 303.497.3744 Description Hydrogen embrittlement has been studied for over a century but understanding of the underlying mechanisms is still
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NIST only participates in the February and August reviews. While natural and anthropogenic contaminants threaten existing freshwater supplies, the use of alternative, “dirty” sources is increasing