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that can be integrated into the research workflows used in developing new materials (e.g., carbon nanotubes) or in determining disease pathologies (e.g., Alzheimer’s disease). We want to explore solutions
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potentially competing performance goals. Achieving these goals requires the development and application of technologies, such as high performance building envelopes and advanced cooling and ventilating systems
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to the sub-nanometer scale regime. Our goal is to leverage our access to state-of-art X-ray and neutron facilities to develop and apply operando measurement methods that can quantify full three-dimensional
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development of sustainable aquaculture in the US. The research will be accomplished through the complementary capabilities or both organizations including advanced analytical capabilities at NIST (e.g., LC-HRMS
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justin.zook@nist.gov 301.975.4133 Description NIST has led the Genome in a Bottle Consortium to develop widely-used benchmark variant calls for seven human cell lines [1]. GIAB has primarily used methods
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) are beginning to broadly impact physics: from probing the evolution of galaxies to calculating quantum wave functions to discovering new states of matter. This postdoctoral research opportunity centers
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particles (usually photons), offers a fundamentally new physical resource for technological experimentation and development. We are developing tools and protocols for quantum networks, focusing mainly
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their processes. Smart machine tools assess and predict their health and the performance of their processes in real time to optimize production quality and yield. Proposals are welcome to develop
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the last 2 decades.[1] However, corresponding development of robust and reproducible in vitro assays for evaluating the critical quality attributes and/or the biological responses of these nano-enabled drug
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Description Euv lithography has become a primary manufacturing tool for the semiconductor industry, but new challenges in the development and characterization of EUV resists have emerged as the technology