186 structures "https:" "https:" "https:" "https:" "https:" "https:" "https:" "Imperial College London" positions at NIST
Sort by
Refine Your Search
-
jason.widegren@nist.gov 303.497.5207 Description https://www.nist.gov/programs-projects/electric-acoustic-spectroscopy-intermolecular-interactions-solution#OnChip NIST’s Material Measurement Laboratory (MML) and
-
, and Jason Widegren https://www.nist.gov/programs-projects/electric-acoustic-spectroscopy-intermolecular-interactions-solution#OnChip NIST’s Material Measurement Laboratory (MML) and Communications
-
property data primarily intended for model development that investigate how the molecular size, molecular structure, and polarity of fuel constituents impacts their thermophysical properties. Measurements
-
, with raw data accessible from a CDCS database hosted at https://potentials.nist.gov/ . Calculation methods will be integrated into the iprPy calculation framework [1], with source code available
-
soft materials are sought especially for the following programmatic areas of interest: (1) Structural properties, dynamics and transport in thermoplastic, thermoset, and functional polymers; (2
-
advance our ability to accurately predict increasingly complex burning scenarios (e.g., varied sample/product configuration and scale). Further details of the project are available online: https
-
consequences. Currently, it is not possible to accurately predict the long term performance of a textile or fiber composite used for ballistic protection. Quantitative measurements of molecular structure
-
.; McLinden, M. O., Nuclear Magnetic Resonance (NMR) Spectroscopy for the in situ Measurement of Vapor-Liquid Equilibria. J. Chem. Engr. Data 2020, https://pubs.acs.org/doi/10.1021/acs.jced.0c00113 . Nuclear
-
. Quantum transport measurements are carried out on test structures and prototypical devices at temperatures from approximately 300 mK to 400 K and in magnetic fields up to 14 T. key words Quantum anomalous
-
quantitative CR-PFM to novel materials and device structures, such as piezoelectric devices for energy harvesting and nano-generation, or lithium ion battery materials for improved power generation and charging