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marked decrease » marked increase (Expand Search)
site decrease » sizes decrease (Expand Search), step decrease (Expand Search), rate decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
c larger » _ larger (Expand Search), c large (Expand Search), _ large (Expand Search)
a marked » _ marked (Expand Search), a marker (Expand Search), a market (Expand Search)
marked decrease » marked increase (Expand Search)
site decrease » sizes decrease (Expand Search), step decrease (Expand Search), rate decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
c larger » _ larger (Expand Search), c large (Expand Search), _ large (Expand Search)
a marked » _ marked (Expand Search), a marker (Expand Search), a market (Expand Search)
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Modeling the Shape and Stability of Co Nanoparticles as a Function of Size and Support Interactions through DFT Calculations and Monte Carlo Simulations
Published 2025“…Increasing MSI led to a flattening of the NPs on the support as well as to decreasing Co dispersion but hardly affected the site distribution, suggesting that they do not alter the NPs intrinsic activity. …”
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Group-level narrow- and broad-band spectral changes after hemispherotomy reveal a marked EEG slowing of the isolated cortex, robust across patients.
Published 2025“…This decrease was larger in the disconnected than in the contralateral cortex. …”
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Sodium Carboxymethyl Starch Films with Enhanced Cross-Linking, Electrical, and Mechanical Properties via Supercritical-Assisted Modification
Published 2025“…Mechanically, Young’s modulus decreased to 35.5% of its original value (from 203.50 to 71.15 MPa), while the elongation at break increased 5-fold (from 11.5 to 56.7%), transitioning CMS-Na from a rigid, brittle material to a ductile, flexible one. …”
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Sodium Carboxymethyl Starch Films with Enhanced Cross-Linking, Electrical, and Mechanical Properties via Supercritical-Assisted Modification
Published 2025“…Mechanically, Young’s modulus decreased to 35.5% of its original value (from 203.50 to 71.15 MPa), while the elongation at break increased 5-fold (from 11.5 to 56.7%), transitioning CMS-Na from a rigid, brittle material to a ductile, flexible one. …”