Showing 5,221 - 5,240 results of 13,596 for search '(( significantly ((greater decrease) OR (linear decrease)) ) OR ( significant increase decrease ))', query time: 0.32s Refine Results
  1. 5221
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    Antibodies used in immunofluorescence staining. by Hiroharu Maegawa (8087543)

    Published 2025
    “…Moreover, the immunoreactivity of CGRP and D2 receptor in the Vc increased after ION ligation and decreased after antibody administration. …”
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    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  8. 5228

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  9. 5229

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  10. 5230

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  11. 5231

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  12. 5232

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  13. 5233

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  14. 5234

    Hydrate-Based Gas Storage Made Greener: Methane Hydrate Formation Enhancement with a Low-Toxicity Promoter by Katipot Inkong (7979942)

    Published 2025
    “…The results demonstrate that higher temperatures lead to lower gas uptake and slower hydrate formation kinetics, as increased temperature reduces heat distribution efficiency. …”
  15. 5235

    The Influence of Nucleating Agent Positional Isomer Structure on the Nucleation Efficiency of Poly(lactic acid): Interaction-Induced Conformational Transitions under High Lattice M... by Jingbo Wu (328587)

    Published 2025
    “…At a loading level of 0.5 wt %, 2ODPTA significantly increases the crystallization peak temperature to 121.5 °C, whereas as the hydroxyl substitution shifts from the ortho position to the para position, the temperature decreases to 108.2 and 105.8 °C, respectively. …”
  16. 5236

    The Influence of Nucleating Agent Positional Isomer Structure on the Nucleation Efficiency of Poly(lactic acid): Interaction-Induced Conformational Transitions under High Lattice M... by Jingbo Wu (328587)

    Published 2025
    “…At a loading level of 0.5 wt %, 2ODPTA significantly increases the crystallization peak temperature to 121.5 °C, whereas as the hydroxyl substitution shifts from the ortho position to the para position, the temperature decreases to 108.2 and 105.8 °C, respectively. …”
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