113 structural-engineering-"https:"-"https:"-"https:"-"https:"-"https:"-"U.S" positions at NIST
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Mode Diagnostic Capabilities for Integrated Circuit Reliability Analyses. ECS Journal of Solid State Science and Technology 4(1) SI: N3113-N3117, 2015 Okoro CA, et al: A Detailed Failure Analysis
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prediction. In collaboration with NASA, NOAA, and the USGS, NIST develops technology to advance the calibration and characterization of ground- and space-based infrared, optical, and temperature sensors
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, 8, 021021 (2018). "Dark State Optical Lattice with a Subwavelength Spatial Structure," Y. Wang, S. Subhankar, P. Bienias, M. Lacki, T-C. Tsui, M. A. Baranov, A. V. Gorshkov, P. Zoller, J. V. Porto
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measurements are used to monitor these surface and interfacial processes. A primary objective of our research involves characterizing surface and/or molecular chemical and structural characteristics under
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energies determined by molecular composition, structure, and vibrational mode type. Various optical methods exist to record these vibrational spectra, enabling access to the rich chemical landscape within
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for the high-throughput simulation of adsorption isotherms in nanoporous solids. References Cockayne E, Wong-Ng W, Chen YS, Culp JT, Allen AJ: Density Functional Theory Study of the Structure of the Pillared
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. The uncertainty of conventional fire measurements can be large due to the practical assumptions used to develop the measurements. State-of-the-art measurement technology is available to provide independent
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detection system. We are working on combining this technology with state-of-the-art microfluidics. The systems of interest include but are not limited to electrochemical electrified interfaces, double layers
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stimulates the search for more effective approaches. Two groups of thermophysical property prediction methods are under rapid development presently – Quantitative Structure-Property Relationship (QSPR) methods
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) and cannabidiol (CBD), as well as numerous terpenes, flavonoids, and fatty acids. It is known that THC, CBD and synthetic cannabinoids with analogous structures can bind to cannabinoid receptors