Showing 12,981 - 13,000 results of 226,405 for search '(( a ((((teer decrease) OR (a decrease))) OR (linear decrease)) ) OR ( a large decrease ))', query time: 1.00s Refine Results
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    Scaling Laws for the Influence of Gravity and Its Gradient on Dropwise Condensation: A Simulation Study by Chen Ma (714759)

    Published 2024
    “…We find clear scaling laws between heat flux <i>Q</i>, residual volume <i>V</i>, gravitational acceleration <i>g,</i> and nucleation density <i>N</i><sub>0</sub> with <i>Q</i> ∼ <i>g</i><sup>1/6</sup><i>N</i><sub>0</sub><sup>1/3</sup> and <i>V</i> ∼ <i>g</i><sup>–1/2</sup><i>N</i><sub>0</sub><sup>0</sup>. We also identify a critical gravitational acceleration determined by nucleation density, above which a counterintuitive trend emerges: the heat flux decreases with increasing gravitational acceleration. …”
  5. 12985

    Mean amplitude values during a complete 360° rotation for the external oblique muscle. by Christoph Anders (4068499)

    Published 2024
    “…The values for the movement half-phase with decreasing load are mirrored to enable a direct comparison between both movement half-phases. …”
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    Mean amplitude values during a complete 360° rotation for the internal oblique muscle. by Christoph Anders (4068499)

    Published 2024
    “…The values for the movement half-phase with decreasing load are mirrored to enable a direct comparison between both movement half-phases. …”
  8. 12988

    Mean amplitude values during a complete 360° rotation for the rectus abdominis muscle. by Christoph Anders (4068499)

    Published 2024
    “…The values for the movement half-phase with decreasing load are mirrored to enable a direct comparison between both movement half-phases. …”
  9. 12989

    Scaling Laws for the Influence of Gravity and Its Gradient on Dropwise Condensation: A Simulation Study by Chen Ma (714759)

    Published 2024
    “…We find clear scaling laws between heat flux <i>Q</i>, residual volume <i>V</i>, gravitational acceleration <i>g,</i> and nucleation density <i>N</i><sub>0</sub> with <i>Q</i> ∼ <i>g</i><sup>1/6</sup><i>N</i><sub>0</sub><sup>1/3</sup> and <i>V</i> ∼ <i>g</i><sup>–1/2</sup><i>N</i><sub>0</sub><sup>0</sup>. We also identify a critical gravitational acceleration determined by nucleation density, above which a counterintuitive trend emerges: the heat flux decreases with increasing gravitational acceleration. …”
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