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RAP opportunity at National Institute of Standards and Technology NIST Durability of Concrete Materials Containing Reactive Minerals in the Aggregate and Concrete Location Engineering Laboratory, Materials and Structural Systems Division opportunity location 50.73.11.C1032 Gaithersburg,...
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Description We are studying the mechanism by which DNA partitions into and threads through single nanometer-scale pores. This experimental and theoretical effort focuses on understanding how genetic information
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, chirality), and the resulting dielectric and mechanical properties. Of our particular interest is quantification and control of affinity to moisture and shear transfer ability of CNC interfaces in
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such as imprinting, and controlled surface-polymerization to produce complex surfaces which provide multivariate insight into the kinetics and thermodynamics of surface chemistry, phase ordering, mechanical
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RAP opportunity at National Institute of Standards and Technology NIST Channel Sounding and Radio Frequency Propagation Location Communications Technology Laboratory, Radio Frequency Technology Division opportunity location 50.67.22.C1019 Boulder, CO NIST only participates in the February...
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pool properties, material cooling rates, material grain structure, and the mechanical properties of bulk parts. These models attempt to resolve a variety of complex physics that occur during laser-metal
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constituents drive community behavior; understand mechanisms of interaction between microorganisms; study emergent properties of microbial communities (e.g., stability, diversity, functional redundancy); track
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involved in molecular destabilization mechanisms provide data for systematically formulating biopharmaceuticals on the basis of inhibiting specific destabilization pathways. We are developing methods
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, toxicology, statistics, and computer programming are applicable. key words Forensics; Forensic Science; Toxicology; Statistics; Mass Spectrometry; Drugs; Chemometrics; Analytical Chemistry Eligibility
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., biomarkers, metabolites) must be evaluated using digital twins of breath device prototypes. Our digital twins are based on simulations using computational fluid dynamics (CFD) and computational fluid and