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quantum-based voltage synthesis techniques. JNT can be implemented as both an absolute method and a temperature scaling technique relative to the current international temperature scale ITS 90
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NIST only participates in the February and August reviews. Self-assembly methods have the potential to integrate heterogeneous nanoscale objects to create multifunctional systems, with applications
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, which require specific 3D conformations to function properly. Any abnormalities in their structures can result in serious health-related problems or drug efficacy losses. However, all current methods have
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new measurement capabilities, standards, or applications or improve existing methods for reference artifact calibration. For more information, see https://www.nist.gov/pml/sensor-science/dimensional
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neutron scattering (SANS), in conjunction with other lab techniques to investigate the structural changes at nanometer scale using the time-resolved neutron scattering methods on a wide range of soft matter
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303.497.4740 Description We are investigating methods of creating new quantum states of light such as Schrodinger cat states, NOON states, and Fock states. These new states have a variety of applications
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operating frequencies above 100 GHz are used in a wide variety of applications—examples include radio astronomy, climate monitoring, mm-wave imaging, and high-speed wireless data relays. The main method
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challenge to design around. This project will focus on microstructural modeling approaches, including both conventional phase field, phase field crystal; and level set methods, to understand the evolution
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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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will be complemented by computer model simulations using available capabilities based on methods such as density functional theory (DFT). [3] [1] J. Ilavsky, F. Zhang, R.N. Andrews, I. Kuzmenko, P.R