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-currents. Ultimately, the goal of this project is to better understand the interactions between spins and superconductors that will allow the development of nanoscale hybrid memory elements that can be
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images. The use of semantically-derived taxonomies, ontologies, and relations automatically extracted from texts can improve the development and standardization of domain-based AI systems and human
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technology development community and cell line repositories to design reference transcriptome samples, and then develop methods to integrate transcriptome sequencing data from short and long read technologies
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and human breath). This project focuses on the development of advanced sensing components-individually or within sensor systems-that can help to push performance to new levels, thereby impacting
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interactions with the electrolyte as a function of applied potential. Despite more than a century of model development, much is still unknown about even single-crystal interfaces. We combine spectroscopic and
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301 975 4364 Kathryn L. Beers kathryn.beers@nist.gov 202 578 8353 Sara Orski sara.orski@nist.gov 301 975 4671 Description Development of quantitative structure-property relationships for polymers has
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materials, (2) the preferred binding sites of adsorbate species in nanoporous solids and predicted experimental signals (e.g., infrared spectra), and (3) the development of DFT-based force field models
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development of advanced models for the prediction of the above physical properties in such solid solutions. We use first-principles density functional theory calculations to uncover the microscopic physics
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information. Our group performs research and development to extend the accuracy, wavelength range, power range, robustness, and portability of radiometric standards. We use advanced nanfabrication techniques
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@nist.gov 301.975.6740 Description With the development of nanoparticle and colloidal technologies that include processing in the dispersed phase (or are fundamentally liquid phase processes), there is a need