Showing 1,261 - 1,280 results of 100,077 for search '(( 5 w decrease ) OR ( 5 ((((step decrease) OR (teer decrease))) OR (a decrease)) ))', query time: 1.37s Refine Results
  1. 1261

    Slow Proton Exchange in Aqueous Solution. Consequences of Protonation and Hydration within the Central Cavity of Preyssler Anion Derivatives, [|M(H<sub>2</sub>O)|⊃P<sub>5</sub>W<su... by Kee-Chan Kim (2537014)

    Published 1999
    “…Redetermination of the crystal structure of the ammonium salt of the Preyssler anion, [NaP<sub>5</sub>W<sub>30</sub>O<sub>110</sub>]<sup>14-</sup> (<b>Na</b>), at low temperature, reveals that a water molecule is coordinated to the encrypted (sodium) cation, a feature that had been previously observed in structures of normal and acid salts of the europium(III) derivatives (<b>Eu </b>and <b>HEu</b>) and the normal salt of the uranium(IV) derivative (<b>U</b>). …”
  2. 1262

    Slow Proton Exchange in Aqueous Solution. Consequences of Protonation and Hydration within the Central Cavity of Preyssler Anion Derivatives, [|M(H<sub>2</sub>O)|⊃P<sub>5</sub>W<su... by Kee-Chan Kim (2537014)

    Published 1999
    “…Redetermination of the crystal structure of the ammonium salt of the Preyssler anion, [NaP<sub>5</sub>W<sub>30</sub>O<sub>110</sub>]<sup>14-</sup> (<b>Na</b>), at low temperature, reveals that a water molecule is coordinated to the encrypted (sodium) cation, a feature that had been previously observed in structures of normal and acid salts of the europium(III) derivatives (<b>Eu </b>and <b>HEu</b>) and the normal salt of the uranium(IV) derivative (<b>U</b>). …”
  3. 1263

    Slow Proton Exchange in Aqueous Solution. Consequences of Protonation and Hydration within the Central Cavity of Preyssler Anion Derivatives, [|M(H<sub>2</sub>O)|⊃P<sub>5</sub>W<su... by Kee-Chan Kim (2537014)

    Published 1999
    “…Redetermination of the crystal structure of the ammonium salt of the Preyssler anion, [NaP<sub>5</sub>W<sub>30</sub>O<sub>110</sub>]<sup>14-</sup> (<b>Na</b>), at low temperature, reveals that a water molecule is coordinated to the encrypted (sodium) cation, a feature that had been previously observed in structures of normal and acid salts of the europium(III) derivatives (<b>Eu </b>and <b>HEu</b>) and the normal salt of the uranium(IV) derivative (<b>U</b>). …”
  4. 1264

    Slow Proton Exchange in Aqueous Solution. Consequences of Protonation and Hydration within the Central Cavity of Preyssler Anion Derivatives, [|M(H<sub>2</sub>O)|⊃P<sub>5</sub>W<su... by Kee-Chan Kim (2537014)

    Published 1999
    “…Redetermination of the crystal structure of the ammonium salt of the Preyssler anion, [NaP<sub>5</sub>W<sub>30</sub>O<sub>110</sub>]<sup>14-</sup> (<b>Na</b>), at low temperature, reveals that a water molecule is coordinated to the encrypted (sodium) cation, a feature that had been previously observed in structures of normal and acid salts of the europium(III) derivatives (<b>Eu </b>and <b>HEu</b>) and the normal salt of the uranium(IV) derivative (<b>U</b>). …”
  5. 1265

    Slow Proton Exchange in Aqueous Solution. Consequences of Protonation and Hydration within the Central Cavity of Preyssler Anion Derivatives, [|M(H<sub>2</sub>O)|⊃P<sub>5</sub>W<su... by Kee-Chan Kim (2537014)

    Published 1999
    “…Redetermination of the crystal structure of the ammonium salt of the Preyssler anion, [NaP<sub>5</sub>W<sub>30</sub>O<sub>110</sub>]<sup>14-</sup> (<b>Na</b>), at low temperature, reveals that a water molecule is coordinated to the encrypted (sodium) cation, a feature that had been previously observed in structures of normal and acid salts of the europium(III) derivatives (<b>Eu </b>and <b>HEu</b>) and the normal salt of the uranium(IV) derivative (<b>U</b>). …”
  6. 1266

    Slow Proton Exchange in Aqueous Solution. Consequences of Protonation and Hydration within the Central Cavity of Preyssler Anion Derivatives, [|M(H<sub>2</sub>O)|⊃P<sub>5</sub>W<su... by Kee-Chan Kim (2537014)

    Published 1999
    “…Redetermination of the crystal structure of the ammonium salt of the Preyssler anion, [NaP<sub>5</sub>W<sub>30</sub>O<sub>110</sub>]<sup>14-</sup> (<b>Na</b>), at low temperature, reveals that a water molecule is coordinated to the encrypted (sodium) cation, a feature that had been previously observed in structures of normal and acid salts of the europium(III) derivatives (<b>Eu </b>and <b>HEu</b>) and the normal salt of the uranium(IV) derivative (<b>U</b>). …”
  7. 1267
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  17. 1277

    Decreased clearance of IgAN patient IgA by CD89-expressing Kupffer cells. by Lijun Xu (195394)

    Published 2016
    “…(B) sCD89-IgA complexes in cell supernatant of (A) were detected by ELISA using A3 and anti-mouse IgA mAb, using 1 μg/mL human IgA binding to 5 μg/mL recCD89 as an internal control. …”
  18. 1278

    Identification of small molecules that inhibit viral M mRNA nuclear export and/or decrease viral M mRNA levels. by Matthew Esparza (8661219)

    Published 2020
    “…<p>(<b>A</b>) Representative images showing uninfected cells; cells infected with A/WSN/33 and pretreated with 0.5% DMSO (control), which show viral M mRNA exported into the cytoplasm, in red; and cells infected with A/WSN/33 pre-treated with 2.5 μM of the transcription inhibitor DRB (5,6-dichloro-1-β-D-ribofuranosylbenzimidazole). …”
  19. 1279

    vFLIP and vCyclin decrease SMAD2 protein expression and desensitize TGF-β signaling. by Hong Seok Choi (121525)

    Published 2015
    “…<p>(A) SMAD2 expression was drastically decreased upon the expression of vFLIP or vCyclin in SLK cells. …”
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