Showing 1,001 - 1,020 results of 21,513 for search '(( a ((teer decrease) OR (linear decrease)) ) OR ( a ((greater decrease) OR (largest decrease)) ))', query time: 0.59s Refine Results
  1. 1001
  2. 1002

    Non-linear degradation does not affect the inference. by Timon Wittenstein (12908474)

    Published 2022
    “…<p>A) For simulated systems with non-linear degradation of X<sub>3</sub>-molecules as defined in <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1010183#pcbi.1010183.e011" target="_blank">Eq (7)</a>, the inference quality is satisfactory when using empirically determined joint probability distributions <i>P</i>(<i>x</i><sub>2</sub>, <i>x</i><sub>3</sub>) from <i>N</i> = 100, 000 samples. …”
  3. 1003

    Linear regression analysis of the optical density experiment. by Luning Wang (769124)

    Published 2015
    “…<p>(A) Light absorptions (A.U.) for viable (x, R<sup>2</sup> = 0.129) and necrotic (o, R<sup>2</sup> = 0.989) epiphyseal cartilage were fitted linearly to different time points, indicating that the PG content remained stable in the viable epiphyseal cartilage, but decreased linearly with time in the areas of chondronecrosis. …”
  4. 1004
  5. 1005
  6. 1006
  7. 1007
  8. 1008
  9. 1009

    Simulated final glucan to glucose conversion <i>versus</i> crystallinity fraction for different ratios (<i>r</i><sub>c,a</sub>) between the digestibilities of the crystalline and t... by Eric Behle (11426692)

    Published 2021
    “…<p>For each value of <i>r</i><sub>c,a</sub> we observe a linear decrease in final glucan to glucose conversion percentage for increasing crystallinity fraction, whose slope becomes steeper as <i>r</i><sub>c,a</sub> decreases. …”
  10. 1010

    DataSheet1_Greater than recommended stiffness and power setting of a stance-phase powered leg prosthesis can improve step-to-step transition work and effective foot length ratio du... by Joshua R. Tacca (18067213)

    Published 2024
    “…Thirteen people with TTA walked using 16 different prosthetic stiffness category and power settings on a level treadmill at 0.75–1.75 m/s. We constructed linear mixed effects models to determine the effects of stiffness category and power settings on AL<sub>trail</sub> W<sub>pos,</sub> UL<sub>lead</sub> W<sub>neg,</sub> and EFLR and hypothesized that decreased stiffness and increased power would increase AL<sub>trail</sub> W<sub>pos</sub>, not change and decrease UL<sub>lead</sub> W<sub>neg</sub> magnitude, and decrease and not change prosthesis EFLR, respectively. …”
  11. 1011

    DataSheet4_Greater than recommended stiffness and power setting of a stance-phase powered leg prosthesis can improve step-to-step transition work and effective foot length ratio du... by Joshua R. Tacca (18067213)

    Published 2024
    “…Thirteen people with TTA walked using 16 different prosthetic stiffness category and power settings on a level treadmill at 0.75–1.75 m/s. We constructed linear mixed effects models to determine the effects of stiffness category and power settings on AL<sub>trail</sub> W<sub>pos,</sub> UL<sub>lead</sub> W<sub>neg,</sub> and EFLR and hypothesized that decreased stiffness and increased power would increase AL<sub>trail</sub> W<sub>pos</sub>, not change and decrease UL<sub>lead</sub> W<sub>neg</sub> magnitude, and decrease and not change prosthesis EFLR, respectively. …”
  12. 1012

    DataSheet3_Greater than recommended stiffness and power setting of a stance-phase powered leg prosthesis can improve step-to-step transition work and effective foot length ratio du... by Joshua R. Tacca (18067213)

    Published 2024
    “…Thirteen people with TTA walked using 16 different prosthetic stiffness category and power settings on a level treadmill at 0.75–1.75 m/s. We constructed linear mixed effects models to determine the effects of stiffness category and power settings on AL<sub>trail</sub> W<sub>pos,</sub> UL<sub>lead</sub> W<sub>neg,</sub> and EFLR and hypothesized that decreased stiffness and increased power would increase AL<sub>trail</sub> W<sub>pos</sub>, not change and decrease UL<sub>lead</sub> W<sub>neg</sub> magnitude, and decrease and not change prosthesis EFLR, respectively. …”
  13. 1013

    DataSheet2_Greater than recommended stiffness and power setting of a stance-phase powered leg prosthesis can improve step-to-step transition work and effective foot length ratio du... by Joshua R. Tacca (18067213)

    Published 2024
    “…Thirteen people with TTA walked using 16 different prosthetic stiffness category and power settings on a level treadmill at 0.75–1.75 m/s. We constructed linear mixed effects models to determine the effects of stiffness category and power settings on AL<sub>trail</sub> W<sub>pos,</sub> UL<sub>lead</sub> W<sub>neg,</sub> and EFLR and hypothesized that decreased stiffness and increased power would increase AL<sub>trail</sub> W<sub>pos</sub>, not change and decrease UL<sub>lead</sub> W<sub>neg</sub> magnitude, and decrease and not change prosthesis EFLR, respectively. …”
  14. 1014
  15. 1015
  16. 1016
  17. 1017
  18. 1018
  19. 1019
  20. 1020