Search alternatives:
largest decrease » largest decreases (Expand Search), marked decrease (Expand Search)
linear decrease » linear increase (Expand Search)
larger decrease » marked decrease (Expand Search)
mean decrease » a decrease (Expand Search)
Showing 13,121 - 13,140 results of 52,235 for search '(( a ((mean decrease) OR (linear decrease)) ) OR ( a ((largest decrease) OR (larger decrease)) ))', query time: 0.70s Refine Results
  1. 13121
  2. 13122

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  3. 13123

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  4. 13124

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  5. 13125

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  6. 13126

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  7. 13127

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  8. 13128

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  9. 13129

    Circular and Chainlike Copper(II)–Lanthanide(III) Complexes Generated by Assembly Reactions of Racemic and Chiral Copper(II) Cross-Linking Ligand Complexes with Ln<sup>III</sup>(NO... by Takahiro Ueno (734599)

    Published 2017
    “…When the temperature was lowered, <b>1Ln</b> and <b>2Ln</b> (<b>Ln</b> = <b>Tb</b>, <b>Dy</b>) showed a decrease in the χ<sub>M</sub><i>T</i> vs <i>T</i> plot due to crystal field effects on the Ln<sup>III</sup> ion (Stark splitting) and an increase due to the ferromagnetic Cu<sup>II</sup>–Ln<sup>III</sup> interaction. …”
  10. 13130

    Effects of EsA on CCl<sub>4</sub>-induced liver oxidative stress. by Fang Zhang (197215)

    Published 2014
    “…<p>EsA treatment significantly decreased levels of MDA (A) and increased the activity of GSH-Px (B) compared with the Injury group. …”
  11. 13131
  12. 13132

    Data_Sheet_1_Functional production of clostridial circularin A in Lactococcus lactis NZ9000 and mutational analysis of its aromatic and cationic residues.PDF by Fangfang Liu (185161)

    Published 2022
    “…Compared with their conventional linear counterparts, circular bacteriocins are highly stable over a broad temperature and pH range, and circularization decreases proteolytic degradation by exopeptidases. …”
  13. 13133

    Macroeconomic burden of NMHs for the whole South American region over the period 2020–2050 across various scenarios. by Maddalena Ferranna (9969446)

    Published 2023
    “…<p><i>Baseline scenario</i> = 3% discount rate, disease burden based on median estimates from the 2019 Global Burden of Diseases (GBD) [<a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0293144#pone.0293144.ref001" target="_blank">1</a>], morbidity affects labor force participation, and treatment costs decrease investments in physical capital proportionally to the saving rate. …”
  14. 13134
  15. 13135
  16. 13136

    Summary of model parameters and their sources. by Emily A. Roberts (21703129)

    Published 2025
    “…We hypothesized that, based on these thermal responses, aerial and aquatic warming will decrease <i>B. glandula</i> growth in a field environment because of increased costs and reduced feeding. …”
  17. 13137

    Table_1_Association of rs2910164 in miR-146a with type 2 diabetes mellitus: A case–control and meta-analysis study.xlsx by Wei-Wei Chang (1676215)

    Published 2022
    “…Second, a meta-analysis on the basis of a larger sample size was used to determine whether this is a susceptibility gene for T2DM.…”
  18. 13138
  19. 13139

    Data_Sheet_1_Transcriptional Response of Streptomyces coelicolor to Rapid Chromosome Relaxation or Long-Term Supercoiling Imbalance.pdf by Marcin Jan Szafran (6944060)

    Published 2019
    “…Remarkably, in S. coelicolor, a model Streptomyces species, topoisomerase I (TopA) is solely responsible for the removal of negative DNA supercoils. …”
  20. 13140

    Table_5_Transcriptional Response of Streptomyces coelicolor to Rapid Chromosome Relaxation or Long-Term Supercoiling Imbalance.pdf by Marcin Jan Szafran (6944060)

    Published 2019
    “…Remarkably, in S. coelicolor, a model Streptomyces species, topoisomerase I (TopA) is solely responsible for the removal of negative DNA supercoils. …”