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applications, extending from neuromorphic computing to compact multiple-input multiple-output antennas. By achieving the aims of this project, this Associate will accelerate material discovery and design for
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://doi.org/10.1007/s11669-022-01011-1 key words Calphad; Diffusion mechanisms; Multicomponent diffusion; Eligibility Citizenship: Open to U.S. citizens Level: Open to Postdoctoral applicants Stipend Base
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https://www.nist.gov/programs-projects/pipeline-safety to learn more about our facilities and current research. Radiation; Metallurgy; Materials science; NDE; Modeling; Fracture; Fatigue; Corrosion
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, and Jason Widegren https://www.nist.gov/programs-projects/electric-acoustic-spectroscopy-intermolecular-interactions-solution#OnChip NIST’s Material Measurement Laboratory (MML) and Communications
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NIST only participates in the February and August reviews. In many application areas, materials development increasingly involves manipulating the local atomic order to optimize properties
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applications (semiconductor industry, micro- and nano- electromechanical devices, etc.). Such advancement requires seamless integration of high-speed measurements onto basic AFM modes and realistic modeling
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scattering; ensemble structures; MD simulations; computation Eligibility Citizenship: Open to U.S. citizens Level: Open to Postdoctoral applicants Stipend Base Stipend Travel Allotment Supplementation
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and distributed control intelligence that can be applied to solve these problems through the application of machine learning, intelligent optimization techniques, automated fault detections and
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(e.g., metal-organic frameworks, hydrogen-bonded organic frameworks etc.) are promising candidates for many gas storage and separation applications. Rational design of new materials requires fundamental
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particles. These functional polyplex particles have numerous opportunities for the application of polymers in life science research.[1] There is much to learn concerning their mechanism of formation