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examples include using finite element and classical atomistic modeling to study nanoindentation, and using density functional theory and semiempirical tight binding to study the deformation, band structure
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C, Trichopoulos GC, Sertel K: "Non-contact probes for on-wafer characterization of sub-millimeter-wave devices and integrated circuits." IEEE Transactions on Microwave Theory and Techniques 62.11
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This research aims to engineer atomic systems with special features that are favorable for testing theory, and for measuring fundamental constants and atomic data. In many cases, progress is impeded, not by
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especially encourage proposals that combine experimental studies with theory and modeling. References McLinden MO, Thol M; Lemmon EW: Thermodynamic properties of trans-1,3,3,3-tetrafluoropropene (R1234ze[E
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databases, and proven record of accomplishment using data informatics. Reference Orloff ND, et al: A Compact Variable-Temperature Broadband Series-Resistor Calibration, IEEE Transactions on Microwave Theory
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, materials modeling (including finite element simulations, and theory), and the development of a high-speed circuit to quantify fiber alignment in composites in real time. To develop this technique, a
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Density Functional Theory (DFT)—frequently fail to balance the necessary accuracy with the required computational scale. Our group is developing a high-performance computational framework to bridge this gap
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in popularity of density functional theory (DFT) has created an opportunity for critical evaluation of the performance of DFT methods versus accurate quantum and experimental data. Quantities such as
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NIST only participates in the February and August reviews. Our research group leverages fiber-laser frequency combs to advance optical clocks, frequency transfer, ranging, and atmospheric spectroscopy. Recent milestones include the engineering of robust, field-deployable frequency combs, the...
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-mechanical processing. Some of these modeling tools include density functional theory (DFT), CALPHAD-based models, phase-field models, and finite-element models (FEM) to predict as-built microsegregation