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Description Nanomechanical properties are critical for the design of all nanodevices. For example, all nanodevices experience mechanical loads during processing and service, and quantitative predictions
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well as human factors (e.g., exhalation rate) and breath device design, are important for forensic and health metrology. Breath sampling and species collection protocols targeting new exhaled compounds (e.g
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. The research activities include: Designing and executing experiments using a Directed Energy Deposition testbed integrated with synchrotron XRD to monitor phase transformations and microstructural changes
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NIST only participates in the February and August reviews. The design and operation of sustainable buildings face multiple challenges to meet energy efficiency, indoor air quality and other
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structures, enabling complex geometry and material designs. Metal Binder Jetting Additive Manufacturing (BJAM) is a sintered-based technology with higher production rates of small to medium sized parts
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development, microfabricated device design and development, measurement of samples with ultrahigh throughput sequencing and microarrays, and bioinformatic/biostatistical data analysis of the large data sets
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been extensively studied, so there are still many open questions about its limitations. In this research opportunity, the successful candidate will address these questions through design, simulation
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waves hazards, (2) modeling of these hazards’ effects on coastal built environment, and (3) development of design guides/standards and emergency preparedness measures to enhance resilience of coastal
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collaborative, multidisciplinary team of researchers to design, build, and model novel instrumentation to advance our capabilities for characterizing nanoparticles at the single-particle level. There will also be
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viable design routes to enable the rational design and synthesis of colloidal crystals, monolayers, and functional materials. These symmetry considerations will especially be used to derive functionality