201 associate-professor-computer-"https:"-"https:"-"https:"-"https:" positions at NIST
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contribute for both targeted delivery and efficacy. To address problems associated with characterization and quantification of the drug load as they relate to efficacy, the ability to measure the distribution
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that are all highly polar and associating. Therefore, biofuels present an enormous challenge for property science. Their successful implementation demands accurate property data for actual fuel mixtures, which
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attracted considerable attention for potential application in nanoscale devices, including beyond-CMOS electronics, quantum computers, chemical sensors, photodetectors, etc. Prospective advantages over
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components. To develop this program in oxide electronics, a successful applicant will have a solid background in programming (Matlab, Python, or equivalent). Experience with any of the following lock
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Description Exploiting atom-based solid-state technology and nanotechnology for quantum technologies such as quantum computing, quantum simulators, quantum nano-optics, and nanoscale sensing requires
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importance in chemical analysis, mass spectrometry still lacks theories that can provide computational predictions useful to the analyst. Mass spectrometry encompasses a variety of experimental techniques
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NIST only participates in the February and August reviews. NIST has recently launched a program to develop high accuracy 3D thermal imaging and control using thermosensitive magnetic nano-objects
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the improvement of measurement science to reduce uncertainties associated with the power rating. Furthermore, as photovoltaic cells and modules age in the field under operation, various degradation
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, robotics), cyberinfrastructure (e.g., databases, high-performance computing, collaboration tools), and humans (e.g., scientists, engineers, students, managers). The recent interest in Explainable AI (XAI
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, interfacial phenomena, and associated transduction processes, often at the nanoscale that allow detection. A wide variety of sensing principles (chemiresistive, capacitive, electrochemical, FET, mass loading