274 web-programmer-developer-"https:"-"UCL"-"P"-"https:"-"https:"-"https:" positions at NIST
Sort by
Refine Your Search
-
computer vision and machine learning. Our computational methods development has three primary goals. The first goal is continued support of expert-driven biomolecular structure determination by NMR, with
-
Description We are using innovative processing to develop novel superconducting materials with enhanced properties for quantum circuit applications. Critical elements for development of these materials
-
.B1995 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Hui Wu huiwu@nist.gov 301 975 2387 Description We develop and study new materials for carbon
-
, oxidation, and mechanical wear of chain scission in fibers are required to support the development of predictive models. This project seeks to utilize and develop novel chemical and mechanical techniques
-
Curt Andrew Richter curt.richter@nist.gov 301.975.2082 Description Our research team is performing foundational experimental research to develop an improved understanding of the physics of the quantum
-
the combined research of the AEO and the CRP, web-accessible tools are being developed (e.g., the Economic Decision Guide Software – EDGe$ Online Tool) to support community resilience planning. Therefore, strong
-
david.bunk@nist.gov 301.975.5071 Johanna Camara johanna.camara@nist.gov 301.975.4672 Description Research focuses on understanding and developing advanced techniques in mass spectrometry and applying them
-
. To embrace these changes, this project will develop a shared calibration service, where NIST and the customer share broadband integrated-circuit calibration artifacts, protocols, software, and data through
-
the integration of thermodynamic and transport properties and phase equilibria in new ways (e.g., by relating mixture viscosities to azeotropy and liquid-liquid equilibria). The goal is to develop modeling
-
Description Developing next-generation joint communcations and sensing applications requires precise measurements of the radio frequency propagation environment as well as sensing target characterization