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to improve relative and absolute spectroradiometric calibration of ground- and space-based telescopes, and of the celestial bodies they view.. We use specialized facilities at NIST, including SIRCUS
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, infrared noncontact thermometers, and many other thermometer designs can achieve high temperature precision but require ongoing periodic calibration to ensure accuracy. For applications in autonomous
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associated kinetics and thermodynamics) and relevant heat/mass transport properties. To address this need, the NIST Fire Research Division has been developing experimental and analytical tools to calibrate
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new measurement capabilities, standards, or applications or improve existing methods for reference artifact calibration. For more information, see https://www.nist.gov/pml/sensor-science/dimensional
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advantages for quantitative mixture analysis: mole ratios of mixture components can be obtained without calibration; spectral peaks are typically narrow and symmetric; flat baselines are readily obtained