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sample preparation equipment (including cross-sections) and also an ability to fabricate prototype devices using electron lithography. The current topics of interest include the process development and
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tools to enable early and accurate diagnoses of disease as well as studies to elucidate mechanisms and networks in complex biological systems. Project areas include biochemical/molecular biology process
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@nist.gov 301.975.6740 Description With the development of nanoparticle and colloidal technologies that include processing in the dispersed phase (or are fundamentally liquid phase processes), there is a need
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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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-nanowire single-photon detectors for applications in quantum information processing, loophole-free Bell measurements, and sources of quantum randomness. References Shainline J, et al, Optics Express 25 10322
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NIST only participates in the February and August reviews. Electromagnetic techniques can provide a means for rapidly analyzing or processing biochemical samples in a manner that can be readily
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the pattern through etching or deposition processes into the functional material of interest. NIL is a simple stamping technique amenable to patterning a wide range of materials. However, NIL often imposes
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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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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
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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