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improved applications, standard reference and proficiency testing materials development and characterization, quality control, and data modelling and analysis. Opportunities exist to develop and test methods
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research seeks to address these challenges through an integrated approach combining high-speed X-ray diffraction (XRD) and other synchrotron-based scattering experiments and advanced data analysis. Central
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are developing object-oriented computational tools for the analysis of materials with complex microstructures. Starting from a digitized micrograph, the program identifies features in the image, assigns material
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control, new and improved applications, and data modelling and analysis to build a comprehensive measurement science and services portfolio for the Isotope Metallomics community. Opportunities exist
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RAP opportunity at National Institute of Standards and Technology NIST Improving Peptide Identification By Making Use of All Levels of Liquid Chromatography-Tandem Mass Spectrometry Analysis
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RAP opportunity at National Institute of Standards and Technology NIST Lightweight Cryptography for Resource Constrained Applications Location Information Technology Laboratory, Computer
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XRD measurements mostly at NIST’s Beamline for Materials Measurements, collaborating with scientists from NIST Gaithersburg, and developing work-flow and data-analysis tools for managing and
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investigations of EUV atom probe tomography, novel approaches to conventional atom probe tomography, and new approaches to reconstruction data mining and analysis. key words Extreme Ultraviolet; Laser-Matter
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needs leads to a series of computational challenges, including metrics of spectral similarity, data handling for applications of principal component analysis (PCA), spectral analysis of mixtures, and
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or atomic resolution and high information content are critical for understanding and harnessing quantum phenomena because, strong correlation typically leads to intricate phase diagrams, susceptibility