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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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; Large displacements; Earthquake engineering; Energy; Uncertainty; Stochastic processes; Control;
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methods, and digital signal processing and network modeling. Other research topics are High-Tc superconductive Josephson junction array waveform synthesizers and compact cryogenic design for the development
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process, and for comparing a biosimilar to an innovator reference product. Biological therapeutics is currently characterized by low resolution techniques like CD, gel filtration, and light scattering
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Description The properties of finished fuels are crucial to the optimization of not only engine operation, but also for the processing of fuels. As petrochemical feed stocks become increasingly scarce
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non-zero T-violating asymmetry coefficient in the decay process. Parity violation in neutrons can also be used to probe nucleon-nucleon weak interactions. We are currently working on a measurement of
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computer vision and machine learning. Our computational methods development has three primary goals. The first goal is continued support of expert-driven biomolecular structure determination by NMR, with
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on composition; (4) development of surface/near surface chemical analysis methods to differentiate material origins and to evaluate the degradation process; (5) development of methods to detect and analyze surface
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john.kitching@nist.gov 303.497.4083 Description The combination of MEMS microfabrication processes and precision spectroscopy is opening the door to highly precise instruments and sensors that are also very small
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of the assay. Assay measurements should incorporate the use of process controls, rigorous statistical analysis techniques and assay robustness evaluations appropriate for the design of interlaboratory studies