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RAP opportunity at National Institute of Standards and Technology NIST (S)TEM Characterization of Superconducting Materials for Quantum Computing Location Physical Measurement Laboratory
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structural techniques for probing the interface, such as SEIRAS and STM, with computational methods to develop new electrochemical models. The computational work focuses on combining DFT methods
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on developing autonomous ML-driven systems for measurement, calibration, and control of quantum systems and quantum computing platforms. Working closely with scientists in the Physics Measurement Laboratory
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Physics Letters 580: 120, 2013 Nanoporous materials; CO2 capture; Gas adsorption; Metal-organic frameworks; DFT; Theory and modeling; Computational thermodynamics; Citizenship: Open to U.S. citizens
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RAP opportunity at National Institute of Standards and Technology NIST Computational Studies of Functional Oxide Materials and Devices Location Material Measurement Laboratory, Materials
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part of a research recommendation engine to guide researchers in the lab. The algorithms integrate machine learning, solid state physics, on-the-fly physical experiments, on-the-fly simulations
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RAP opportunity at National Institute of Standards and Technology NIST Atom-based Solid-state Quantum Devices and Simulators Location Physical Measurement Laboratory, Quantum Measurement
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RAP opportunity at National Institute of Standards and Technology NIST Integrating Data and Computational Tools for Advanced Materials Design Location Material Measurement Laboratory, Materials
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generation magnetic data storage. Research projects will include using X ray and neutron scattering to characterize the fidelity of the block copolymer structure to the template and computer simulations of
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, or techniques that will speed up analysis times, provide increased information to the chemist, and/or simplify data interpretation while enhancing data quality. One of the goals of the forensic program at NIST is