Showing 61 - 80 results of 38,871 for search '(((( i large decrease ) OR ( i values decrease ))) OR ( ((c cycles) OR (000 cycles)) increases ))', query time: 1.17s Refine Results
  1. 61
  2. 62

    Table_1_Phenotypic Clumping Decreases With Flock Richness in Mixed-Species Bird Flocks.DOCX by Priti Bangal (9979259)

    Published 2021
    “…Using a null model approach, we found that small flocks were more phenotypically clumped for body size than expected by chance; however, phenotypic clumping decreased as flocks increased in size and approached expected phenotypic variation in large flocks. …”
  3. 63

    Costs and Benefits of Popular <i>P</i>‑Value Correction Methods in Three Models of Quantitative Omic Experiments by Steven R. Shuken (14500192)

    Published 2023
    “…We show how increasing sample size, decreasing variability, or increasing effect size can enable the detection of all true changes while still correcting <i>p</i>-values, and we present basic guidelines for omic experimental design. …”
  4. 64
  5. 65
  6. 66

    <b>Supporting data for manuscript</b> "<b>Voluntary locomotion induces an early and remote hemodynamic decrease in the large cerebral veins</b>" by Kira Shaw (18796168)

    Published 2025
    “…<p dir="ltr">The CSV file 'Eyreetal_DrainingVein_SourceData' contains the averaged time series traces and extracted metrics from individual experiments used across Figures 1-5 in the manuscript "Voluntary locomotion induces an early and remote hemodynamic decrease in the large cerebral veins". …”
  7. 67
  8. 68
  9. 69
  10. 70

    Data_Sheet_1_Phenotypic Clumping Decreases With Flock Richness in Mixed-Species Bird Flocks.csv by Priti Bangal (9979259)

    Published 2021
    “…Using a null model approach, we found that small flocks were more phenotypically clumped for body size than expected by chance; however, phenotypic clumping decreased as flocks increased in size and approached expected phenotypic variation in large flocks. …”
  11. 71
  12. 72
  13. 73
  14. 74
  15. 75
  16. 76
  17. 77
  18. 78
  19. 79
  20. 80