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the potential toxicity of compounds to humans and ecological receptors. To establish the extent of the biological relevance of these assays in predicting the effects in physiological systems, a high-level of
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that cryogenic-compatible memory elements can be developed that can be integrated with the superconducting logic circuits. The goal of this project is to develop nanoscale ferromagnetic devices that can be
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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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@nist.gov (303) 497 5235 Andrew J. Slifka andrew.slifka@nist.gov 303.497.3744 Description Hydrogen embrittlement has been studied for over a century but understanding of the underlying mechanisms is still
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NIST only participates in the February and August reviews. While natural and anthropogenic contaminants threaten existing freshwater supplies, the use of alternative, “dirty” sources is increasing
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folding of a protein biologic is critical for drug efficacy, misfolding may impact drug safety by eliciting unwanted immune and/or other off-target responses. High-resolution measurements of the structure(s
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edward.sisco@nist.gov 301 975 2093 Description This opportunity focuses on developing new methods, metrics, approaches, and techniques for the forensic analysis of seized drugs. Seized drug analysis is the most
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(1.6 μm). Numerous receivers are available including several 10” and 16” Schmidt-Cassegrain telescopes each equipped with a PMT and photon counting system for backscatter detection over integrated paths
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used to construct custom geometries. Arthritic disease states are induced with lipopolysaccharide and glucose. Osteoporotic states are induced by knock out. Mechanisms of disease and repair will be
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memory, batteries, catalysts, flexible devices, alternate computing paradigms, and quantum phenomena. In order to take advantage of the promising properties of these heterogeneous systems, holistic study