Showing 1 - 20 results of 4,833 for search '(( a marked decrease ) OR ((( via ((step decrease) OR (a decrease)) ) OR ( 5 teer decrease ))))', query time: 0.69s Refine Results
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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 by Enrico Sireci (12127349)

    Published 2025
    “…We report a marked increase in step and kink sites at the expense of terraces with increasing particle size, which we linked to the experimentally observed increase in turnover frequency (TOF). …”
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    Image 5_Using sodium glycodeoxycholate to develop a temporary infant-like gut barrier model, in vitro.pdf by Francesca Bietto (21511316)

    Published 2025
    “…The treatment also reduced the key tight junction protein, occludin, at the cell membrane, and increased acidic mucins and extracellular alkaline phosphatase activity. Additionally, GDC decreased cAMP, suggesting its mechanism of action was via activation of a G-protein coupled receptor. …”
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    Sodium Carboxymethyl Starch Films with Enhanced Cross-Linking, Electrical, and Mechanical Properties via Supercritical-Assisted Modification by Mingge Wang (16859159)

    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 by Mingge Wang (16859159)

    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 by Mingge Wang (16859159)

    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. …”