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linear decrease » linear increase (Expand Search)
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linear decrease » linear increase (Expand Search)
marked decrease » marked increase (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a linear » _ linear (Expand Search)
60 a » 60 c (Expand Search), 60 _ (Expand Search), 60 0 (Expand Search)
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Repetitive stress induces a decrease in sound-evoked activity.
Published 2025“…<p>(a) Left: noise-evoked activity rates at different noise intensities for chronically tracked PPys cells in baseline and repeated stress conditions (<i>N</i> = 5 mice, <i>n</i> = 285 neurons, mean ± SE). …”
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A Locally Linear Dynamic Strategy for Manifold Learning.
Published 2025“…At 50% noise, <i>R</i> increases, marking a regime not well captured by local linearization. …”
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Ultrahigh Subcooling Dropwise Condensation Heat Transfer on Slippery Liquid-like Monolayer Grafted Surfaces
Published 2024“…The experimental heat transfer performance is further compared to the theoretical heat transfer via the individual droplets with the droplet distribution elucidated via both macroscopic observations as well as environmental scanning electron microscopy. Finally, only a mild decrease in the heat transfer coefficient of 20.3% after 100 h of condensation test at <i>T</i><sub>sub</sub> of 60 K is reported. …”
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Ultrahigh Subcooling Dropwise Condensation Heat Transfer on Slippery Liquid-like Monolayer Grafted Surfaces
Published 2024“…The experimental heat transfer performance is further compared to the theoretical heat transfer via the individual droplets with the droplet distribution elucidated via both macroscopic observations as well as environmental scanning electron microscopy. Finally, only a mild decrease in the heat transfer coefficient of 20.3% after 100 h of condensation test at <i>T</i><sub>sub</sub> of 60 K is reported. …”
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Ultrahigh Subcooling Dropwise Condensation Heat Transfer on Slippery Liquid-like Monolayer Grafted Surfaces
Published 2024“…The experimental heat transfer performance is further compared to the theoretical heat transfer via the individual droplets with the droplet distribution elucidated via both macroscopic observations as well as environmental scanning electron microscopy. Finally, only a mild decrease in the heat transfer coefficient of 20.3% after 100 h of condensation test at <i>T</i><sub>sub</sub> of 60 K is reported. …”
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