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opportunities to interface with researchers at both NIST and at the National Institutes of Health (NIH). Reference Zabow G, Dodd SJ, Koretsky AP: "Shape-changing magnetic assemblies as high-sensitivity NMR
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and calibration, radiation-hardness testing, personnel protection, radiation modification of materials, waste treatment, and high-energy computed tomography. These accelerator facilities afford
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has an active effort in the development of electron microscopy methods for high spatial resolution materials characterization and has recently upgraded its aberration-corrected STEM with a high-speed
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associated kinetics and thermodynamics) and relevant heat/mass transport properties. To address this need, the NIST Fire Research Division has been developing experimental and analytical tools to calibrate
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computational tools to predict materials properties at the quantum level. In addition, electronic structure methods that go beyond the accuracy of DFT such as Quantum Monte Carlo, GW, and other advanced
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301.975.6050 Jan Obrzut [email protected] 301.975.6845 Description As part of a collaborative NIST-wide program involving structural characterization, modeling, and high-throughput microwave measurement, we
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301.233.6503 Description The Analytical Chemistry Division has an ongoing program to improve the quality of analytical chemical measurements made in marine environmental research through analytical methods
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[email protected] 301.233.6503 Description The Analytical Chemistry Division has an ongoing program to improve the quality of analytical chemical measurements made in marine environmental research through
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NIST only participates in the February and August reviews. This program explores the development and evaluation of integrated measurement strategies for biopharmaceutical manufacturing using
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adoption of this manufacturing technology—especially for critical applications that require qualification and certification—increasingly require that computational models and in-situ monitoring