Showing 881 - 900 results of 104,227 for search '(( 2 w decrease ) OR ( 5 ((((step decrease) OR (teer decrease))) OR (a decrease)) ))', query time: 1.65s Refine Results
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    Data_Sheet_6_Chemical Similarity of Co-occurring Trees Decreases With Precipitation and Temperature in North American Forests.CSV by Brian E. Sedio (10875330)

    Published 2021
    “…In contrast, chemical similarity of co-occurring species decreased with both MAT and MAP, and metabolite richness increased with MAT. …”
  4. 884

    Data_Sheet_1_Chemical Similarity of Co-occurring Trees Decreases With Precipitation and Temperature in North American Forests.CSV by Brian E. Sedio (10875330)

    Published 2021
    “…In contrast, chemical similarity of co-occurring species decreased with both MAT and MAP, and metabolite richness increased with MAT. …”
  5. 885

    Data_Sheet_4_Chemical Similarity of Co-occurring Trees Decreases With Precipitation and Temperature in North American Forests.CSV by Brian E. Sedio (10875330)

    Published 2021
    “…In contrast, chemical similarity of co-occurring species decreased with both MAT and MAP, and metabolite richness increased with MAT. …”
  6. 886

    Data_Sheet_3_Chemical Similarity of Co-occurring Trees Decreases With Precipitation and Temperature in North American Forests.CSV by Brian E. Sedio (10875330)

    Published 2021
    “…In contrast, chemical similarity of co-occurring species decreased with both MAT and MAP, and metabolite richness increased with MAT. …”
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    The expression of Myc leads to a decreased rate of dinitrophenol uncoupled respiration when glutamate+malate and succinate+rotenone were used as complex I and complex II substrates... by Hyoung-gon Lee (73934)

    Published 2013
    “…<p>Myc did not affect the oxidation of TMPD-ascorbate (Panel A). Direct measurement of electron transport chain enzyme activity shows that Myc decreased activities of complex I, NCR (NADH cytochrome <i>c</i> oxidoreductase), and complex III (Panel B). …”
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    Optical Activity and Dehydration-Driven Switching of Magnetic Properties in Enantiopure Cyanido-Bridged Co<sup>II</sup><sub>3</sub>W<sup>V</sup><sub>2</sub> Trigonal Bipyramids by Szymon Chorazy (1396666)

    Published 2015
    “…The unique enantiopure {[Λ-Co<sup>II</sup>(­(<i>R</i>)-mpm)<sub>2</sub>]<sub>3</sub>[W<sup>V</sup>(CN)<sub>8</sub>]<sub>2</sub>}·9H<sub>2</sub>O [(<i>R</i>)-<b>1</b>] and {[Δ-Co<sup>II</sup>((<i>S</i>)-mpm)<sub>2</sub>]<sub>3</sub>[W<sup>V</sup>(CN)<sub>8</sub>]<sub>2</sub>}·9H<sub>2</sub>O [(<i>S</i>)-<b>1</b>], where mpm = α-methylpyridinemethanol, magnetic spongelike materials, crystallizing in the chiral <i>P</i>2<sub>1</sub> space group, are constructed of cyanido-bridged {Co<sub>3</sub>W<sub>2</sub>} trigonal bipyramids with three <i>cis</i>-[Co<sup>II</sup>(mpm)<sub>2</sub>(μ-NC)<sub>2</sub>] moieties in equatorial sites and two [W<sup>V</sup>(CN)<sub>8</sub>]<sup>3–</sup> units in apical positions. …”
  17. 897

    Optical Activity and Dehydration-Driven Switching of Magnetic Properties in Enantiopure Cyanido-Bridged Co<sup>II</sup><sub>3</sub>W<sup>V</sup><sub>2</sub> Trigonal Bipyramids by Szymon Chorazy (1396666)

    Published 2015
    “…The unique enantiopure {[Λ-Co<sup>II</sup>(­(<i>R</i>)-mpm)<sub>2</sub>]<sub>3</sub>[W<sup>V</sup>(CN)<sub>8</sub>]<sub>2</sub>}·9H<sub>2</sub>O [(<i>R</i>)-<b>1</b>] and {[Δ-Co<sup>II</sup>((<i>S</i>)-mpm)<sub>2</sub>]<sub>3</sub>[W<sup>V</sup>(CN)<sub>8</sub>]<sub>2</sub>}·9H<sub>2</sub>O [(<i>S</i>)-<b>1</b>], where mpm = α-methylpyridinemethanol, magnetic spongelike materials, crystallizing in the chiral <i>P</i>2<sub>1</sub> space group, are constructed of cyanido-bridged {Co<sub>3</sub>W<sub>2</sub>} trigonal bipyramids with three <i>cis</i>-[Co<sup>II</sup>(mpm)<sub>2</sub>(μ-NC)<sub>2</sub>] moieties in equatorial sites and two [W<sup>V</sup>(CN)<sub>8</sub>]<sup>3–</sup> units in apical positions. …”
  18. 898

    Copy numbers of circulating BamHI-W DNA and three BART-miRNAs at diagnosis and changes after treatment. by Nobuyuki Hirai (3185838)

    Published 2016
    “…(A) The copy numbers of BamHI-W DNA before treatment were significantly decreased three months after treatment. …”
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