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Advancing State-of-the-Art Material Phase and Crystallographic Texture Characterization NIST only participates in the February and August reviews. While phase structure and texture have been
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thermophysical property data for the process gases. Our group maintains a wide variety of experimental apparatus for state-of-the-art property measurements. These include a two-sinker densimeter for reference
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fractionation methods combined with multi-detector analysis. Multiple state-of-the-art A4F systems are available to support this research, with on-line UV-Vis diode array detectors, differential refractometry
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for chemical detection and cytometry (e.g. characterization of single cells and microdroplets in flow). This project focuses on designing, fabricating, and testing state-of-the-art photonic light sources and
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to the sub-nanometer scale regime. Our goal is to leverage our access to state-of-art X-ray and neutron facilities to develop and apply operando measurement methods that can quantify full three-dimensional
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) a state-of-the-art time-of-flight secondary ion microprobe that incorporates a choice of several pulsed ion guns combined with a time-of-flight mass spectrometer to obtain complete mass-spectral
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using NIST’s state-of-the-art NanoFab and extensive measurement capabilities, CMOS circuit design work for foundry tape-out, and theoretical work developing new algorithms and architectures that leverage
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phone Meghan Catherine Burke Harris [email protected] 301-975-5631 Description This project aims to leverage sample preparation methods, state-of-the-art instrumentation, and custom software
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of local structures. NIST’s Materials Measurement Science Division has access to state-of-the-art synchrotron and neutron radiation facilities for this research. References: 1. Krayzman, V., Bosak, A
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measurement assurance to support the control and rational design of biological function. Through state of the art synthetic biology, automation, and machine learning, the Group creates living measurement