Sort by
Refine Your Search
-
Material Measurement Laboratory, Materials Measurement Science Division/Brookhaven Lab NIST only participates in the February and August reviews. This postdoctoral fellowship aims to study the relationship of structure and function in chemical and material systems by the integration of...
-
the development of analytical methodologies, from both instrumentation and informatics standpoints, for the multifaceted and convoluted data that are obtained from complex biological, chemical, and forensic samples
-
with strain engineered into the channel to improve carrier mobility while residual strains from manufacturing processes can lead to mechanical failures. Similarly, quantum computing architectures use
-
NIST only participates in the February and August reviews. Research opportunities are available to advance the measurement of fluid flow, airspeed, liquid density and volume, and the measurement and quantum mechanical calculation of the fundamental thermodynamic and transport properties of...
-
include the development of novel polymeric mechanical testing devices, novel adhesion blister testing devices, development of high-throughput screening devices, informatics, and data base development. key
-
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
-
Measurement Science to Advance Understanding of Chemical Equilibria in Natural Waters NIST only participates in the February and August reviews. NIST has a long-standing program in electroanalytical
-
. This computational approach, incorporating quantum mechanics, can help materials research by a) directly simulating and interpreting experiments, b) establishing relationships between material structure and properties
-
attracted considerable attention for potential application in nanoscale devices, including beyond-CMOS electronics, quantum computers, chemical sensors, photodetectors, etc. Prospective advantages over
-
Description Exploiting atom-based solid-state technology and nanotechnology for quantum technologies such as quantum computing, quantum simulators, quantum nano-optics, and nanoscale sensing requires