Sort by
Refine Your Search
-
8353 Christopher L. Soles [email protected] 301.975.8087 Description To enable the use of novel materials in fiber reinforced composites, an unprecedented effort must be launched to develop
-
measurements of these systems. Theory and simulations are being done to develop this understanding. We are investigating the electronic and optical properties of quantum dots and wires, metallic and
-
NIST only participates in the February and August reviews. NIST has recently launched a program to develop high accuracy 3D thermal imaging and control using thermosensitive magnetic nano-objects
-
to this research is the development and application of real-time data analysis pipelines to process the vast, high-speed XRD datasets generated during AM processes. These pipelines will utilize
-
interest for us. Potential project areas include the design and development of systems that allow for careful control and measurement of the temperature and pressure of the sample; the development of peak
-
, speciation). The project will focus on the design and development of front-end techniques, devices, and platforms with the potential to directly sample, or separate, analytes from complex matrices (e.g., dirt
-
development of advanced models for the prediction of the above physical properties in such solid solutions. We use first-principles density functional theory calculations to uncover the microscopic physics
-
are developing new methods for characterizing the structure and dynamics of the interface and interphase regions in carbon-based nanocomposite materials and in the overall conductive properties of these polymer
-
provides the thermochemical foundation for new noninvasive breath analysis techniques. Law enforcement applications include the development of breath analysis devices for the quantitative measurement of drug
-
. At NIST, we use large-geometry SIMS instruments to develop new particle analysis methods, improve analytical accuracy and reproducibility, and collaboratively develop new microparticle reference materials