Showing 5,941 - 5,960 results of 29,543 for search '(( 50 ((we decrease) OR (((mean decrease) OR (a decrease)))) ) OR ( 5 step decrease ))', query time: 0.84s Refine Results
  1. 5941
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  4. 5944

    Predicted <i>cis</i>-acting elements in <i>DpAP2</i> promoter. by Lingru Ruan (18995544)

    Published 2024
    “…<i>parva</i> cells treated with different concentrations of MeJA (10, 20, 50, 100 μM) and GA3 (10, 20, 50, 100 μM). The high concentrations of MeJA (10–100 μM) inhibited the accumulation of carotenoid, and the relative expression of <i>DpAP2</i>, <i>PSY</i>, <i>PDS</i> and <i>GGPS</i> decreased significantly. …”
  5. 5945
  6. 5946
  7. 5947

    CAU-52: An Iron Metal–Organic Framework Containing Furandicarboxylate Linker Molecules by Essam Alkhnaifes (21011246)

    Published 2025
    “…The V-shaped linker molecule 2,5-furandicarboxylic acid (H<sub>2</sub>FDC), which can be derived from lignocellulosic biomass, was used in a systematic screening with various iron salts and led to the discovery of a new iron-based metal–organic framework (Fe-MOF) with the composition [Fe<sub>3</sub>(μ<sub>3</sub>-O)(FDC)<sub>3</sub>(OH)(H<sub>2</sub>O)<sub>2</sub>]·5H<sub>2</sub>O·H<sub>2</sub>FDC, designated as CAU-52 (CAU = Christian-Albrechts-Universität zu Kiel). …”
  8. 5948

    CAU-52: An Iron Metal–Organic Framework Containing Furandicarboxylate Linker Molecules by Essam Alkhnaifes (21011246)

    Published 2025
    “…The V-shaped linker molecule 2,5-furandicarboxylic acid (H<sub>2</sub>FDC), which can be derived from lignocellulosic biomass, was used in a systematic screening with various iron salts and led to the discovery of a new iron-based metal–organic framework (Fe-MOF) with the composition [Fe<sub>3</sub>(μ<sub>3</sub>-O)(FDC)<sub>3</sub>(OH)(H<sub>2</sub>O)<sub>2</sub>]·5H<sub>2</sub>O·H<sub>2</sub>FDC, designated as CAU-52 (CAU = Christian-Albrechts-Universität zu Kiel). …”
  9. 5949
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  11. 5951

    Strong Impacts of Regional Atmospheric Transport on the Vertical Distribution of Aerosol Ammonium over Beijing by Ting Yang (189879)

    Published 2023
    “…Our results unveil a surprising single-peak profile of NH<sub>4</sub><sup>+</sup> at heights of 300–700 m in the urban boundary layer with its hourly concentration reaching ∼50 μg m<sup>–3</sup>, which is 3 times higher than that at the ground level, in contrast to the conventional patterns of decreasing concentrations with height. …”
  12. 5952

    Genes associated with androgen-induced decrease in H3K27me3 mark in the gene body and overlapping with promoters and distal enhancers involving long-range regulation of gene expres... by Sambit Roy (5463899)

    Published 2021
    “…<p>A: Heat maps showing the read density change along the peak regions for the 16345 control peaks and the 3975 treatment peaks. …”
  13. 5953

    Methods for Carbon Mass Closure in Polyolefin Hydrocracking by Anna E. Brenner (13906458)

    Published 2025
    “…In systems that generate a large fraction of vapor-phase products, typical product capture methods can result in large carbon balance deficits, exceeding 50%, compromising reported yields and selectivities. …”
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  16. 5956

    The total volume of PDHE1<sup>+</sup> mitochondria is reduced in NPC1 mutant fibroblasts. by Collin M. MacLeod (17512385)

    Published 2023
    “…Data are presented as mean ± SEM, n = 8 cells. **P < 0.01. Scale bar: (A) 50 μm (B) 10 μm.…”
  17. 5957

    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 Os<sup>II</sup> complexes hydrolyze up to 100 times more slowly than their Ru<sup>II</sup> analogues. The p<i>K</i>*<sub>a</sub> of the aqua adducts decreased with a similar trend (p<i>K</i>*<sub>a</sub> = 6.3 and 5.8 for en and phen adducts, respectively). …”
  18. 5958

    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 Os<sup>II</sup> complexes hydrolyze up to 100 times more slowly than their Ru<sup>II</sup> analogues. The p<i>K</i>*<sub>a</sub> of the aqua adducts decreased with a similar trend (p<i>K</i>*<sub>a</sub> = 6.3 and 5.8 for en and phen adducts, respectively). …”
  19. 5959

    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 Os<sup>II</sup> complexes hydrolyze up to 100 times more slowly than their Ru<sup>II</sup> analogues. The p<i>K</i>*<sub>a</sub> of the aqua adducts decreased with a similar trend (p<i>K</i>*<sub>a</sub> = 6.3 and 5.8 for en and phen adducts, respectively). …”
  20. 5960

    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 Os<sup>II</sup> complexes hydrolyze up to 100 times more slowly than their Ru<sup>II</sup> analogues. The p<i>K</i>*<sub>a</sub> of the aqua adducts decreased with a similar trend (p<i>K</i>*<sub>a</sub> = 6.3 and 5.8 for en and phen adducts, respectively). …”