176 evolution-"https:"-"https:"-"https:"-"https:"-"https:"-"BioData"-"BioData"-"BioData" positions at NIST in United States
Sort by
Refine Your Search
-
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
-
materials research and development by orders of magnitude, and it is a core capability and focus area for the Data and AI-Driven Materials Science Group, MMSD, MML. This research opportunity centers
-
and then accessed by a team of experts. We are seeking candidates to address these challenges that range from algorithm development, simulation of reference data, algorithmic accuracy evaluations, design of
-
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
-
, materials modeling (including finite element simulations, and theory), and the development of a high-speed circuit to quantify fiber alignment in composites in real time. To develop this technique, a
-
particles (usually photons), offers a fundamentally new physical resource for technological experimentation and development. We are developing tools and protocols for quantum networks, focusing mainly
-
extractions; mass spectrometry; and capillary electrophoresis. Other forensic-related applications of these techniques to the development of methods and/or standards are encouraged. key words Chromatography
-
, are promising emerging manufacturing technologies for producing complex and highly-customized parts. These processes have been in development over the past 15+ years and their capabilities have grown
-
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