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on the presence and distribution of such strains. Many other high-impact studies are possible using techniques (both in situ and ex situ ) such as TEM, AFM, SEM, and X-ray diffraction on single crystals
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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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the construction process and correlates to the durability and service life of the composites. The goal is to understand the interplay between structure-properties-performance within these systems
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nanoelectronics fabrication methods. Measurements are performed in diagnostic-compatible CVD and ALD reactors under realistic deposition conditions. Various in situ vibrational spectroscopic techniques are employed
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RAP opportunity at National Institute of Standards and Technology NIST Applications of Machine Learning/AI to Neutron Scattering Location NIST Center for Neutron Research opportunity location 50.61.01.C0300 Gaithersburg, MD NIST only participates in the February and August...
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quantitative optical response. Review of Scientific Instruments, 87:9 DOI: 10.1063/1.4962034 Asmar A, Benson Z, Chalfoun J, Peskin A, Halter M, Plant A. (2024). High-volume, label-free imaging for quantifying
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RAP opportunity at National Institute of Standards and Technology NIST Channel Sounding and Radio Frequency Propagation Location Communications Technology Laboratory, Radio Frequency Technology Division opportunity location 50.67.22.C1019 Boulder, CO NIST only participates in the February...
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surface composition, surface reactivity, stability, physical state and functional performance (nano-analytics). Research focuses on (1) the development of measurement methods and instrumentation
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301.975.3438 Description NIST has developed an integrated measurement services program for forensic and cannabis (hemp and marijuana) laboratories to help ensure the quality of routine analysis of cannabis plant
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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