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Measurements that define the electrical properties of materials such as metals, foils, metallic paints, glass coatings, and silicon wafers are of increasing importance for silicon photovoltaic processing
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releasable transporters (CARTs) with polyelectrolytes. Modern organocatalytic synthesis of well-defined and functional CART molecules interact with oppositely charged polyelectrolytes to form polyplex
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are developing the next-generation deployable, calibration-free Doppler thermometers. The Doppler broadening of spectral lines relates gas temperature to SI-defining physical constants and immutable gas
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NIST only participates in the February and August reviews. The development of nanomaterials, biomaterials, sensor films, and surface measurement methods require well-defined substrates that vary in
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levels are defining electronic properties that govern how an electronic device operates, and these properties are dependent on many factors such as heterointerfaces formed and its microstructure. In
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documentation to facilitate the successful adaptation and implementation of this new approach by the scientific community at large. [1] Boulder Atomic Clock Optical Network (BACON) Collaboration. Frequency ratio
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are developing machine learning-driven autonomous metrology research systems, with the goal of accelerating the development of self-correcting photonic and quantum sensor networks. These systems combine machine
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the accuracy of their analyses. Candidates interested in topics related to this work, please contact us! The NRC process allows us significant flexibility when defining research goals for NRC fellows
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LC-MS/MS instruments and custom software tools. Individuals with a background in proteomic sample preparation, mass spectrometry, and software development are encouraged to apply as well those who have
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properties to them, generates a finite element mesh, and performs virtual measurements. The goal is to build a computational platform that can predict the macroscopic behavior of a material from knowledge of