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attributes are poorly understood. In this opportunity, we seek to perform simulations of nanotubes in solution with the ultimate goal of more fundamentally understanding the physicochemical and thermophysical
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for electrical energy storage at grid scale are severely limited by the rheology, energy density, and stability of the working fluids. These fluids have requirements that are in conflict and require performance
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that combine experience from traditional ceramic processing with recent breakthroughs in densification of ceramics, like cold sintering[2] or ultra-fast high-temperature sintering [3]. Our effort at NIST focuses
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. Rev., 2022, 51, 5248-5267. 3. Wang M., Ramer G., Perez-Morelo D. J., Pavlidis G., Schwartz J. J., Yu L., Ilic R., Aksyuk V. A., Centrone A. "High throughput nanoimaging of thermal conductivity and
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to form benchmark transcriptomes. Finally, to use these benchmark data, the postdoc could work with methods developers to develop appropriate performance metrics for other ‘omics and develop tools to use
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, but face technical challenges to achieve their potential for high efficiency. Third generation devices are now being developed that exploit nanoscale three-dimensional (3D) structures to achieve higher
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are essential for broad adoption of these methods, this postdoc would collaborate with a unique array of technology and informatics developers in the Genome in a Bottle Consortium to develop authoritative de novo
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requires expertise in Computer Science, Statistics, or a similar field. Experience with machine learning, genetics, and/or bio-informatics is strongly preferred. The postdoc will work together and within a
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operating frequencies above 100 GHz are used in a wide variety of applications—examples include radio astronomy, climate monitoring, mm-wave imaging, and high-speed wireless data relays. The main method
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for critical applications that require qualification and certification—increasingly require that computational models and in-situ monitoring of such processes be experimentally validated under highly controlled