Showing 5,021 - 5,040 results of 19,829 for search '(( 50 ((ms decrease) OR (nn decrease)) ) OR ( 100 ((a decrease) OR (teer decrease)) ))', query time: 0.88s Refine Results
  1. 5021

    Changes in gene expression associated with CS. by Lorise C. Gahring (271630)

    Published 2017
    “…In this case these genes are decreased by CS in the α7<sup>E260A:G</sup> by >2-fold. …”
  2. 5022
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  5. 5025

    Receiver operating characteristic curve for anti-NIE antibodies for <i>S. stercoralis.</i> by Jannet A. Tobon Ramos (20855642)

    Published 2025
    “…Twelve months following MDA, the seroprevalence decreased in the IDA arm to 88 of 212 (41.5%) compared to 100 of 185 (54%) in the DA arm (<i>p</i> = 0.012, chi-square) (<a href="http://www.plosntds.org/article/info:doi/10.1371/journal.pntd.0012851#pntd.0012851.t004" target="_blank">Table 4A</a>). …”
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  12. 5032
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  14. 5034
  15. 5035

    Dynamics of Liquid Transfer from Nanoporous Stamps in High-Resolution Flexographic Printing by Dhanushkodi D. Mariappan (6792080)

    Published 2019
    “…Specifically, we find that the printed ink volume and resulting layer thickness are independent of contact pressure; and that printed layer thickness decreases with retraction speed. Under these conditions, nanoparticle films with controlled thickness in the <100 nm regime can be printed using nanoporous stamp flexography, at speeds commensurate with industrial printing equipment.…”
  16. 5036

    Dynamics of Liquid Transfer from Nanoporous Stamps in High-Resolution Flexographic Printing by Dhanushkodi D. Mariappan (6792080)

    Published 2019
    “…Specifically, we find that the printed ink volume and resulting layer thickness are independent of contact pressure; and that printed layer thickness decreases with retraction speed. Under these conditions, nanoparticle films with controlled thickness in the <100 nm regime can be printed using nanoporous stamp flexography, at speeds commensurate with industrial printing equipment.…”
  17. 5037

    Dynamics of Liquid Transfer from Nanoporous Stamps in High-Resolution Flexographic Printing by Dhanushkodi D. Mariappan (6792080)

    Published 2019
    “…Specifically, we find that the printed ink volume and resulting layer thickness are independent of contact pressure; and that printed layer thickness decreases with retraction speed. Under these conditions, nanoparticle films with controlled thickness in the <100 nm regime can be printed using nanoporous stamp flexography, at speeds commensurate with industrial printing equipment.…”
  18. 5038

    Dynamics of Liquid Transfer from Nanoporous Stamps in High-Resolution Flexographic Printing by Dhanushkodi D. Mariappan (6792080)

    Published 2019
    “…Specifically, we find that the printed ink volume and resulting layer thickness are independent of contact pressure; and that printed layer thickness decreases with retraction speed. Under these conditions, nanoparticle films with controlled thickness in the <100 nm regime can be printed using nanoporous stamp flexography, at speeds commensurate with industrial printing equipment.…”
  19. 5039

    Dynamics of Liquid Transfer from Nanoporous Stamps in High-Resolution Flexographic Printing by Dhanushkodi D. Mariappan (6792080)

    Published 2019
    “…Specifically, we find that the printed ink volume and resulting layer thickness are independent of contact pressure; and that printed layer thickness decreases with retraction speed. Under these conditions, nanoparticle films with controlled thickness in the <100 nm regime can be printed using nanoporous stamp flexography, at speeds commensurate with industrial printing equipment.…”
  20. 5040

    Dynamics of Liquid Transfer from Nanoporous Stamps in High-Resolution Flexographic Printing by Dhanushkodi D. Mariappan (6792080)

    Published 2019
    “…Specifically, we find that the printed ink volume and resulting layer thickness are independent of contact pressure; and that printed layer thickness decreases with retraction speed. Under these conditions, nanoparticle films with controlled thickness in the <100 nm regime can be printed using nanoporous stamp flexography, at speeds commensurate with industrial printing equipment.…”