313 web-development-"https:"-"https:"-"https:"-"Institut-Agro-Rennes-Angers" positions at NIST
Sort by
Refine Your Search
-
methods, and digital signal processing and network modeling. Other research topics are High-Tc superconductive Josephson junction array waveform synthesizers and compact cryogenic design for the development
-
@nist.gov 301.975.4310 Description The Fire Research Division of NIST’s Engineering Laboratory develops and maintains a computational fluid dynamics software package for modeling building and wildland fires
-
for the direct air capture (DAC) of carbon dioxide, and its permanent mineralization or sequestration through appropriate carbonation processes. Development of these technologies is critical to meet U.S. energy
-
the researcher a unique opportunity to develop and test novel dosimetry systems for quantification of patient dose in radiotherapy, or dose delivered to products in industrial electron beam processing
-
metabolomics. Our studies focus on developing new mass spectral data analysis algorithms (e.g., clustering) to better solve the common key persistent problems arising from factors such as mass shift and peak
-
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
-
) to characterize the nuclear motions associated with the observed THz features. New methods based on electro-optical dual-optical-frequency combs and room-temperature multi-heterodyne detection are under development
-
), in the CODATA evaluation of fundamental constants, and in more stringent tests of quantum electrodynamics (QED). Experimental efforts include the development of novel ion trap architectures
-
relative to community goals; and interdisciplinary research and modeling, data visualization, and programming (software architecture, web application development). Buildings; Infrastructure systems; Social
-
reagents and biomolecules have been hampered by a lack of robust and quantitative measurement techniques, particularly when available fluid volumes are limited. To address these issues, we have developed