Showing 141 - 160 results of 13,813 for search '(((( ((i large) OR (a large)) decrease ) OR ( c large decrease ))) OR ( ic cases increased ))', query time: 0.75s Refine Results
  1. 141

    Observation of a Large Slip Effect in the Nanoscale Flow of Highly Viscous Supercooled Liquid Metals by Jun-Xiang Xiang (16751412)

    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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    Data_Sheet_1_Pre- and Interhospital Workflow Times for Patients With Large Vessel Occlusion Stroke Transferred for Endovasvular Thrombectomy.docx by Laura C. C. van Meenen (11336568)

    Published 2021
    “…<p>Background: Patients with large vessel occlusion (LVO) stroke are often initially admitted to a primary stroke center (PSC) and subsequently transferred to a comprehensive stroke center (CSC) for endovascular thrombectomy (EVT). …”
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    Pathway analysis of significantly changed proteins comparing large stones vs sand. by Jacob Rose (12981890)

    Published 2022
    “…<p>(A) Among downregulated pathways and proteins in large stones (<i>when comparing large stones vs sand</i>), RNA export, ribosomal binding and proteases are significantly decreased. …”
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    Multistage Condensation Pathway Minimizes Hysteresis in Water Harvesting with Large-Pore Metal–Organic Frameworks by Alberto Zaragoza (17752617)

    Published 2024
    “…Co<sub>2</sub>Cl<sub>2</sub>(BTDD) is a noteworthy exception. This MOF has large, 2.2 nm diameter one-dimensional pores and combines both record-high water capacity and minimal hysteresis, making it an excellent material for water capture in arid areas. …”
  15. 155

    Multistage Condensation Pathway Minimizes Hysteresis in Water Harvesting with Large-Pore Metal–Organic Frameworks by Alberto Zaragoza (17752617)

    Published 2024
    “…Co<sub>2</sub>Cl<sub>2</sub>(BTDD) is a noteworthy exception. This MOF has large, 2.2 nm diameter one-dimensional pores and combines both record-high water capacity and minimal hysteresis, making it an excellent material for water capture in arid areas. …”
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