184 structures "https:" "https:" "https:" "https:" "https:" "IMT Atlantique" positions at NIST
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details of regulatory mechanisms for ERK1/2 is a timely and important goal. Structural, biochemical, and biophysical experiments carried out by Natalie Ahn's lab and others have established key aspects
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mass spectrometry; and advanced chemometric tools for the analysis, interpretation, and comparison of complex metabolomic data sets. https://www.nist.gov/programs-projects/metabolomics-quality-assurance
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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
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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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, 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
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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
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the mechanical properties of polymer thin films change under confinement. We are applying a wrinkling-based metrology to elucidate the mechanical response of confined and/or structured polymer films. Of interest
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.; 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
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these issues. On-wafer measurements of thin-film devices allows us to measure the impedance of planar thin-film-based structures at frequencies up to 100 GHz. When combined with more traditional impedance
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collaborators from academic institutions, professional societies (ISMRM, RSNA), and possibly other federal agencies to develop the calibration structures and quantitative imaging protocols. MRI; Biomedical