Showing 1,421 - 1,440 results of 113,630 for search '(( 10 ((nm decrease) OR (we decrease)) ) OR ( 50 ((a decrease) OR (nn decrease)) ))', query time: 1.34s Refine Results
  1. 1421

    Monoallelic Loss of the Imprinted Gene <i>Grb10</i> Promotes Tumor Formation in Irradiated <i>Nf1<sup>+/-</sup></i> Mice by Rana Mroue (743596)

    Published 2015
    “…Restoring <i>Grb10</i> in <i>Nf1</i> mutant tumors decreases proliferation, decreases soft agar colony formation and downregulates Ras signaling. …”
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  7. 1427

    ReaxFF-<i>l</i>g: Correction of the ReaxFF Reactive Force Field for London Dispersion, with Applications to the Equations of State for Energetic Materials by Lianchi Liu (2091472)

    Published 2011
    “…We derive here these <i>l</i>g corrections to ReaxFF based on the experimental crystal structure data for graphite, polyethylene (PE), carbon dioxide, and nitrogen and for energetic materials: hexahydro-1,3,5-trinitro-1,3,5-<i>s</i>-triazine (RDX), pentaerythritol tetranitrate (PETN), 1,3,5-triamino-2,4,6-trinitrobenzene (TATB), and nitromethane (NM). …”
  8. 1428

    ReaxFF-<i>l</i>g: Correction of the ReaxFF Reactive Force Field for London Dispersion, with Applications to the Equations of State for Energetic Materials by Lianchi Liu (2091472)

    Published 2011
    “…We derive here these <i>l</i>g corrections to ReaxFF based on the experimental crystal structure data for graphite, polyethylene (PE), carbon dioxide, and nitrogen and for energetic materials: hexahydro-1,3,5-trinitro-1,3,5-<i>s</i>-triazine (RDX), pentaerythritol tetranitrate (PETN), 1,3,5-triamino-2,4,6-trinitrobenzene (TATB), and nitromethane (NM). …”
  9. 1429

    Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates by Xiaoling Zhou (4644826)

    Published 2025
    “…Here, we employ large-scale molecular dynamics simulations to investigate the compressive deformation of C/A nanopillars composed of alternating equal-thickness crystalline Cu and amorphous Cu<sub>50</sub>Zr<sub>50</sub> layers. …”
  10. 1430

    Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates by Xiaoling Zhou (4644826)

    Published 2025
    “…Here, we employ large-scale molecular dynamics simulations to investigate the compressive deformation of C/A nanopillars composed of alternating equal-thickness crystalline Cu and amorphous Cu<sub>50</sub>Zr<sub>50</sub> layers. …”
  11. 1431

    Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates by Xiaoling Zhou (4644826)

    Published 2025
    “…Here, we employ large-scale molecular dynamics simulations to investigate the compressive deformation of C/A nanopillars composed of alternating equal-thickness crystalline Cu and amorphous Cu<sub>50</sub>Zr<sub>50</sub> layers. …”
  12. 1432

    Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates by Xiaoling Zhou (4644826)

    Published 2025
    “…Here, we employ large-scale molecular dynamics simulations to investigate the compressive deformation of C/A nanopillars composed of alternating equal-thickness crystalline Cu and amorphous Cu<sub>50</sub>Zr<sub>50</sub> layers. …”
  13. 1433

    Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates by Xiaoling Zhou (4644826)

    Published 2025
    “…Here, we employ large-scale molecular dynamics simulations to investigate the compressive deformation of C/A nanopillars composed of alternating equal-thickness crystalline Cu and amorphous Cu<sub>50</sub>Zr<sub>50</sub> layers. …”
  14. 1434

    Layer-Thickness-Dependent Strengthening–Toughening Mechanisms in Crystalline/Amorphous Nanolaminates by Xiaoling Zhou (4644826)

    Published 2025
    “…Here, we employ large-scale molecular dynamics simulations to investigate the compressive deformation of C/A nanopillars composed of alternating equal-thickness crystalline Cu and amorphous Cu<sub>50</sub>Zr<sub>50</sub> layers. …”
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  17. 1437

    Fabrication of Optically Transparent Carbon Electrodes by the Pyrolysis of Photoresist Films:  Approach to Single-Molecule Spectroelectrochemistry by Sebastian Donner (2643562)

    Published 2006
    “…At a wavelength of 500 nm, for example, 13- and 79-nm-thick films have transparencies of 47 and 10% and sheet resistances of 1100 and 210 Ω/□, respectively. …”
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