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E-commerce transactions use client server applications that involve a service requestor and one or more service providers. To obtain assurance that the
The OOF project seeks to provide flexible software for finite-element modeling the behavior of real microstructures, with meshes derived from micrographs.
Developments in solid–liquid extraction approaches for direct liquid sampling of surfaces combined with mass spectrometry for explosives and narcotics detection
Next-generation Radio Access Networks (RANs) are characterized by the disaggregation of the network elements and the use of intelligent controllers to manage
OpenCalphad (OC) is an informal international collaboration of scientists and researchers interested in the development of high quality software and databases
Electrochemical processes are ubiquitous. Man-made processes such as energy production by solar cells and battery charging and discharging are examples of
Collecting and analyzing data to inform changes to improve system performance is a hallmark of Smart Manufacturing. making full use of that data is impeded by a
NIST, the nation’s reference lab for chemical measurements, helps crime labs and medical first responders rapidly detect and identify opioids, particularly new
The sizing and counting of subvisible particles in the size range 2 μm to 100 μm is an essential component of product quality assurance in therapeutic protein
This program aims to develop standards, methods, and modeling for assessing the periodic structures using optical reflectance and transmittance measurements.
The very best atomic clocks today are known as optical clocks, because their timebase resides at a very high frequency (~10 15 Hz), corresponding to the optical
The Optical Medical Imaging project was established to advance the application of optical imaging in surgical, clinical, and medical practices. Our goal is to
The Optical Medical Imaging program was established to advance the application of optical imaging in surgical, clinical, and medical practices. Our goal is
We develop new approaches to optical microscopy and electromagnetic modeling to enable improved metrology of nanoscale structures with dimensions more than an
The Optical and Microwave Spectroscopy of Microelectronic Systems program in the Spin Electronics group applies best-in-the-world and novel microwave and
A collaborative team working to establish the science and technology of networks for superconducting quantum computers by demonstrating the world’s first
This project aims to develop rigorous measurements and methodology needed for determining optical and electrical properties of advanced materials that might be
This program aims to improve the metrology of optical polarization by developing new measurement methods and theoretical understanding of polarization phenomena
We develop novel inelastic scattering methodologies to probe, quantify, and control key magnetic phenomena in 2D materials for applications in beyond CMOS
Radiometric, radiance temperature, photometric, and color scales have been realized based on the spectral responsivity of standard detectors and radiometers
We study how material properties, surface topography, and contaminants affect the distribution of light scattered from surfaces. Our aim is to support industry