392 information-security "https:" "https:" "https:" "https:" "https:" "Brunel University London" positions at NIST
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within the Quantum Measurement Division is investigating graphene metrology towards two goals: (1) to develop near-room-temperature graphene quantum Hall devices and other possible quantum electrical
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RAP opportunity at National Institute of Standards and Technology NIST Enabling Advanced Functionalities in Photonics using Low-Dimensional Semiconductors Location Material Measurement Laboratory, Materials Measurement Science Division opportunity location 50.64.31.B8238 Gaithersburg,...
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are particularly interested in developing and characterizing hybrid quantum systems (interfaces between dissimilar physical media), suitable for quantum information purposes, and exotic sources of faint light
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RAP opportunity at National Institute of Standards and Technology NIST Generating Ontologies from Domain Corpora using Artificial Intelligence Techniques Location Information
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assemble a wide variety of dye molecules on to nanotube surfaces. The atomic lattice of a SWCNT is expected to exert strong orienting force on the adsorbed dye molecules, thus making it possible to control
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to understand dynamic changes within microbiomes or to design interventions (e.g., modeling algal blooms, improving human health or crop yields, bioremediation). This project seeks is to develop measurement
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to effectively convert interactions occurring at gas-solid or liquid-solid interfaces, or between molecules, into measurable signals that provide information on the nature and concentration of chemical and
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may.martin@nist.gov (303) 497 5235 Description Hydrogen embrittlement is a bit unique among environmental phenomena in that it is important to industry and has also been extensively studied in academia
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Information Technology Laboratory, Applied and Computational Mathematics Division NIST only participates in the February and August reviews. Machine Learning (ML) and artificial intelligence (AI
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the potential of quantum states of light for advanced measurements and computation, integration in a chip-scale nanophotonic environment is required. In particular, the integration of single-photon sources with