309 web-programmer-developer-"https:"-"UCL"-"University-of-Cambridge"-"https:" positions at NIST
Sort by
Refine Your Search
-
. This research focuses on developing and implementing compressive sensing methods for electron microscopy and spectrometry based imaging and microanalysis techniques to address some of the inherent data
-
301.975.2235 Description We are developing novel methodologies and approaches to modeling complex systems consisting of a large number of interacting elements. The models should not only have predictive power
-
information. Our group performs research and development to extend the accuracy, wavelength range, power range, robustness, and portability of radiometric standards. We use advanced nanfabrication techniques
-
existing projects in the Energy and Environment Division. References Persily A” "Challenges in developing ventilation and indoor air quality standards: The story of ASHRAE Standard 62." Building and
-
approval, we seek to develop methods to measure local stress states in benchmark constriction-flow geometries that lead to blood damage. For example, we seek improvements in flow-field imaging, flow
-
, economics, and all branches of science. Current concerns include the development and analysis of algorithms for the solution of problems of estimation, simulation and control of complex systems, and their
-
function; (2) explore available algorithms for image post-processing to recover original information about the visual environment; (3) explore scientific applications of new imaging methods; and (4) develop
-
. The bioanalytical science group is directed toward developing a suite of fundamental measurement science, technology, standards, and reference data to enable more accurate and confident characterization of key
-
internal and external to NIST -- to develop new measurement tools and improve quality of existing measurements. Recent work has focused on (i) design and operation of microfluidic devices for cytometry and
-
on fundamental constants in the development of quantum electrical standards. The FEM group uses physical laws, quantum invariants, and ultra-precision measurement techniques to create and refine a core set of