Showing 361 - 380 results of 26,806 for search '(( 5 ((nn decrease) OR (teer decrease)) ) OR ( 50 ((ng decrease) OR (a decrease)) ))', query time: 0.75s Refine Results
  1. 361

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  2. 362

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  3. 363

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  4. 364

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  5. 365

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  6. 366

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  7. 367

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
  8. 368

    The effect of novel synthetic communities on plant shoot Pi content can be predicted by an NN. by Sur Herrera Paredes (674875)

    Published 2018
    “…The validation prediction error on NN is significantly smaller than LM (<i>p</i>-value = 5.25 × 10<sup>−10</sup>) and INT (<i>p</i>-value = 4.65 × 10<sup>−7</sup>). …”
  9. 369
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  16. 376

    The ATR IR signal decreases with decreasing dilutions of cells. by Allison L. Stelling (392086)

    Published 2013
    “…<p>Shown is a box plot for serial dilutions of a glioblastoma cell suspension. …”
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  19. 379

    Galiellalactone decreases the proportion of ALDH+ prostate cancer cells in vitro and the ALDH1A1 expression in vivo. by Rebecka Hellsten (348459)

    Published 2013
    “…<p>A. DU145 and LNCaP-IL6 cells were treated with galiellalactone (5–50 µM) for 24 h and subjected to ALDEFLUOR® assay. …”
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