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large decrease » marked decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
c large » _ large (Expand Search), i large (Expand Search), _ larger (Expand Search)
b large » _ large (Expand Search), i large (Expand Search), _ larger (Expand Search)
a large » _ large (Expand Search)
c also » _ also (Expand Search), can also (Expand Search)
large decrease » marked decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
c large » _ large (Expand Search), i large (Expand Search), _ larger (Expand Search)
b large » _ large (Expand Search), i large (Expand Search), _ larger (Expand Search)
a large » _ large (Expand Search)
c also » _ also (Expand Search), can also (Expand Search)
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<b>Human disturbance alters the foraging and spatiotemporal activity of a large carnivore</b>
Published 2025“…Responses to human disturbance were generally consistent across sites, with pumas adjusting their temporal, spatial, and foraging axes to decrease encounters with humans. Our results suggest that human-disturbed landscapes across regions alter the primary niche axes of pumas to construct a new realized niche in human landscapes, which may have important consequences for their ecological interactions and the functional role of this large carnivore.…”
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O-GlcNAc immunoprecipitation (IP) for carnitine palmitoyltransferase 1B (CPT1B).
Published 2022Subjects: -
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Observation of a Large Slip Effect in the Nanoscale Flow of Highly Viscous Supercooled Liquid Metals
Published 2023“…Here, we report the observation of a large boundary slip in the nanoscale flow of highly viscous supercooled liquid metals (with viscosities of ≲10<sup>8</sup> Pa s), enabled by the hydrophobic treatment of smooth nanochannels. …”
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Observation of a Large Slip Effect in the Nanoscale Flow of Highly Viscous Supercooled Liquid Metals
Published 2023“…Here, we report the observation of a large boundary slip in the nanoscale flow of highly viscous supercooled liquid metals (with viscosities of ≲10<sup>8</sup> Pa s), enabled by the hydrophobic treatment of smooth nanochannels. …”
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