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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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on characterizing such novel magnetic behavior and understanding the origin of the new phenomena, so that the relationship between structure, processing, and properties can be established. Such a relationship is
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in the United States. Currently, the process of bacterial culture (testing to find what bacteria are present) and sensitivity (testing to find what kind of antibiotic will kill the bacteria present
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recognition; Multivariate statistics; LC-MS analysis; Computer programming; Data analysis; Chemometrics; Principal component analysis; D-partial least squares; Eligibility citizenship Open to U.S. citizens
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NIST only participates in the February and August reviews. The Alternative Computing Group at NIST has an ongoing program developing new metrologies to support emerging information processing
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absorption fine structure), development of data-analysis approaches and computer software for simultaneous structural refinements using multiple types of data combined with ab initio theoretical modeling
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, manufacturing and materials processing industries, and it also has scientific applications for solar irradiance, Earth radiance, accurate calibration of astronomical instruments, and emerging needs of quantum
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, process, or part qualification and providing benchmarking datasets for model validation to support industry adoption and standards development of metal BJAM. NIST has researched other AM technologies
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identification of spectral features by computer vision and machine learning. Our computational methods development has three primary goals. The first goal is continued support of expert-driven biomolecular
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these methodologies in such diverse areas as the calculation of global warming potentials and of rates of chemical reactions on nanoparticle surfaces. Simulation of reactive processes on metallic surfaces and on