331 computational-physics "https:" "https:" "https:" "https:" "IFM" "IFM" positions at NIST
Sort by
Refine Your Search
-
research. https://www.nist.gov/el/goals-programs/high-performance-building-systems References Ng, Lisa C. and W. Vance Payne. Energy use consequences of ventilating a net-zero energy house. Applied Thermal
-
, and Jason Widegren https://www.nist.gov/programs-projects/electric-acoustic-spectroscopy-intermolecular-interactions-solution#OnChip NIST’s Material Measurement Laboratory (MML) and Communications
-
(2022). https://doi.org/10.1007/s11669-022-01011-1
-
are encouraged to submit research proposals on the following topics: DFT and MD for computational dielectric spectroscopy Properties of electrochemical double layer (effects on the local polarization, structure
-
computational tools to predict materials properties at the quantum level. In addition, electronic structure methods that go beyond the accuracy of DFT such as Quantum Monte Carlo, GW, and other advanced
-
Nanoelectronic-Based Manipulation and Measurement Tools for Biological Applications NIST only participates in the February and August reviews. We are developing physical measurement tools and
-
preparation, manipulation, and electrical probing in conjunction with electron microscopy (SEM). Such probes not only have proven research utility, but are also used in industrial development and process
-
transient phases during ceramic cold sintering process. Acta Mater. 259, 119283 (2023) https://doi.org/10.1016/j.actamat.2023.119283 advanced ceramic processing, ceramic sintering; in situ characterization; X
-
near-field microwave microscopy. Journal of Magnetism and Magnetic Materials. 2022;546:168870. doi: https://doi.org/10.1016/j.jmmm.2021.168870 . Ferroelectric; Ferromagnetic; Frequency-tunable materials
-
digital models through an additive process. AM enables the rapid production of complex parts with minimal lead time, fewer constraints, and reduced assembly requirements. This makes it an attractive option