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behavior (e.g., ignition, burning rate, fire growth). Such predictions require accurate and efficient simulation of the tightly coupled, time-dependent condensed- and gas-phase processes that control
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even several million atoms on an ordinary computer. It links the different length scales smoothly and seamlessly.Such a model should be useful for many industrial applications of nanodiamnds
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the improvement of measurement science to reduce uncertainties associated with the power rating. Furthermore, as photovoltaic cells and modules age in the field under operation, various degradation
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of MBE growth systems for compound III-V semiconductors (arsenides and nitrides) and advanced nanofabrication and processing capabilities. We invite proposals aimed at both theoretical and experimental
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computing. As the code has scaled up, we have also faced challenges in visualizing and analyzing large data sets. The visualization tool used with FDS is called Smokview . We are seeking a computer scientist
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NIST only participates in the February and August reviews. Thermophysical properties are a key to efficiently and effectively designing the processes to produce and use the many fluids important in
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to study both quasi-static and dynamic magnetization processes, with the intention to use these new techniques to correlate the magnetodynamic properties with the fundamental material microstructure (e.g
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patient’s target cells to treat intractable diseases, such as cancer and genetic diseases. Infectious titer is a critical measurement of viral vector function and potency. Such functional measures of viral
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chromatography time-of-flight MS, and supercritical fluid chromatography) for natural product analyses; (3) evaluation of sample extraction, fractionation/cleanup, derivatization, and hydrolysis processes, (4
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system. A third, variable temperature STM system is included in this facility for examination of processed samples and AFM-type measurements, such as scanning gate microscpy. Work is carried out within