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circuit design and the signal-chain engineering. We will focus on an in-depth analysis of the correlations between the design of the charge circuit and the resulting level of noise and charge sensing
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, instrumentation, optical modelling, and/or biophysics. Candidates will work closely with a collaborative, multidisciplinary team of researchers to design, build, and model novel instrumentation to advance our
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on a collaboration with experts across multiple Laboratories at NIST involving detector-response modelling, next-generation TES sensor design, and quantitative sample-preparation methods. key words
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microscopy or magnetic instrument design to help develop this magnetic scanning microscope to quantitatively measure temperature throughout the volume of solid state, chemical, or biological samples. A
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learning with machine-controlled measurement tools for closed loop experiment design, execution, and analysis, where experiment design is guided by active learning, Bayesian optimization, and similar methods
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NIST only participates in the February and August reviews. The design and operation of sustainable buildings face multiple challenges to meet energy efficiency, indoor air quality and other
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, speciation). The project will focus on the design and development of front-end techniques, devices, and platforms with the potential to directly sample, or separate, analytes from complex matrices (e.g., dirt
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technology development community and cell line repositories to design reference transcriptome samples, and then develop methods to integrate transcriptome sequencing data from short and long read technologies
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the use of laser pumping and silicon micromaching. This proejct develops compact magentic sensors than combine high sensitivity and accuracy with vector field readout and manufacturability. We design novel
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@boulder.nist.gov 303.497.5089 Description The successful design and deployment of next-generation electronic and optoelectronic nanoscale devices will require a detailed understanding of the underlying electronic