331 parallel-computing-numerical-methods-"Simons-Foundation" positions at NIST in United States
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Measurement Science to Advance Understanding of Chemical Equilibria in Natural Waters NIST only participates in the February and August reviews. NIST has a long-standing program in electroanalytical
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include 1) developing test methods to assess the occurence and abundance of reactive minerals, like pyrrhotite, found in aggregate and concrete; 2) identifying reactive mineral/aggregate/concrete reactions
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process can enable users to observe and track the quality of the fabrication, and thus the quality of the part as it's being built, through in-process monitoring (IPM). Various methods of IPM have been
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is how chain architecture, main chain stiffness, and side group flexibility impacts the elastic modulus of ultrathin polymer films. Additionally, we are developing methods for quantifying the tensile
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303.497.4598 Description The Applied Chemicals and Materials Division (ACMD) of the NIST Material Measurement Laboratory (MML) performs numerical modeling to advance laboratory measurements of exhaled breath
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of failure strengths are needed to ensure reliability and maximize performance. We use numerous modeling approaches to explore the mechanical and electrical behavior of deforming nanoscale systems. Current
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research program focuses on engineering these nanoparticles with desired physical and chemical properties and specified functionality through wet-chemistry synthesis. We are particularly interested in
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methods for electronic-based manipulation and measurements of cells and their environment in well-controlled microsystems. This research opportunity focuses on the design, fabrication, and assessment of new
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NIST only participates in the February and August reviews. This opportunity focuses on the development and implementation of liquid chromatography mass spectrometry methods for the quantitation
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approach for peptide/protein identification and quantification, and has been the method of choice for clinical biomarker discovery. Although MS technology has rapidly advanced, the detection of current