Showing 65,981 - 66,000 results of 101,164 for search '(( 5 ((teer decrease) OR (step decrease)) ) OR ( 5 ((a decrease) OR (mean decrease)) ))', query time: 1.61s Refine Results
  1. 65981

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  2. 65982

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  3. 65983

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  4. 65984

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  5. 65985

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  6. 65986

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  7. 65987

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  8. 65988

    Inhibition of the Hedgehog pathway partially rescues pancreas formation in pancreas with activated β-catenin signaling. by Jose Luis Muñoz-Bravo (3220134)

    Published 2016
    “…<p>Increased Shh expression in the embryonic (E13.5) epithelium of <i>Pdx1-Cre; Ctnnb1</i><sup><i>tm1Mmt/+</i></sup> pancreas (B) compared to control pancreata (A). …”
  9. 65989

    Optimisation of read depth, DNA quantity, and unique alternate observation threshold. by Melinda L. Tursky (20790436)

    Published 2025
    “…<p>A: The detection rate of reference standard variants ranging from 0.0008 to 0.1 VAF at 500-5,000 × depth. …”
  10. 65990

    GRP silencing on PTEN/AKT/mTOR signaling and MYCN, TWIST, FAK. by Pritha Paul (382332)

    Published 2013
    “…<p>(A) BE(2)-C/Tet/shGRP (+DOX) cells and SH-SY5Y/Tet/shGRP (+DOX) cells had an increase in PTEN expression along with correlative decreases in pAKT and pmTOR expression when compared to control cells (without doxycycline; -DOX). …”
  11. 65991

    Expression levels of the selected genes knocked down by RNAi. by Dong Fang (168743)

    Published 2011
    “…A 160 µg dosage was only used in the <i>krmp</i>-injected group, because the expression did not decrease significantly in the 40 µg dosage-injected group.…”
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