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Robotic Systems for Smart Manufacturing Program is developing the measurement science needed to enable manufacturers to characterize and understand the performance of robotics systems within
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velocity profile, unsteady flow) effect the performance of various flow meter types (e.g., turbine meters, critical venturis, ultrasonic flow meters), (3) development of theoretical models validated by
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NIST only participates in the February and August reviews. The roll out of high-speed, low-latency communications networks is expected to drive economic growth through automation while creating new
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-enhanced laser-based methods, optical spectroscopies (infrared, visible, ultraviolet, Raman, light scattering), gas chromatography/mass spectroscopy (GC/MS), high-performance liquid chromatography (HPLC
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are critical for attaining measurement quality objectives and meeting the needs of the health and medical community. The isotope metallomics program at NIST focuses on analytical method development, rapid
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diagnosis and treatment and furthering the understanding of disease etiology. The advent of high-resolution mass spectrometers and advanced data analysis tools has aided the growth of the field by
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, (2) interpretation of experimental spectra, (3) development of semi-empirical methods, (4) studies of reactivity indices, (5) computational electrochemistry, and (6) chemical informatics. The explosion
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: algorithm design for the interpretation of measurements, designing algorithms for deciding which experiments to perform, communicating with the instruments, orchestrating the steps of the research campaign
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is to measure to high accuracy the SI-traceable spectral energy distribution over the visible and near infrared wavelength range for a set of stars for use as flux standards for astronomy. In
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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