388 evolution "https:" "https:" "https:" "https:" "https:" "https:" "U.S" "U.S" "U.S" "Sciences Po" positions at NIST
Sort by
Refine Your Search
-
-eddy simulation and direct numerical simulation of the phenomena. Topics of interest include algorithm development numerical combustion, scientific visualization, and data analysis. key words Buoyancy
-
to this information offers unique possibilities for the development and validation of the next generation of models of molecular interface formation on multiple scales, ranging from molecular dynamics simulations
-
on multicomponent systems. Current efforts focus on the development of flat-histogram methods, which have been applied to study a broad range of problems including the fluid-phase behavior of multicomponent systems
-
on the development of nucleic acid-based standard materials and the application of emerging technologies to assist clinical testing efforts. key words Sequencing; Capillary electrophoresis; DNA; Clinical; Genotyping
-
beam scanning electron microscope (FIB SEM) with x-ray spectroscopy and cryo capability, an environmental SEM, and a transmission electron microscope. This project will involve development of novel
-
communities impact all aspects of the world in which we live, and our relationships with surrounding microbial populations can have negative and positive impacts on the survival of both. The development
-
NIST only participates in the February and August reviews. This suite of projects seeks to advance the microbial metabolomics infrastructure through the development of new analytical methods
-
problems, including ensuring the reliability of our nation’s infrastructure, development of methods for storage and transport of alternative fuels, and development of critical data on radiation’s effects
-
proteases, and ion mobility adds layers of confidence to a given identification. Individuals with a background in mass spectrometry or software development are encouraged to apply. key words mass
-
using novel analytical approaches. Specifically, this research will focus on (1) development of laboratory methods to produce controlled-size micro- and nanoplastics; (2) development of field-flow