Showing 601 - 620 results of 19,302 for search '(( 50 ((ns decrease) OR (((we decrease) OR (a decrease)))) ) OR ( e point decrease ))', query time: 0.64s Refine Results
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    Interfacial Engineering with a Nanoparticle-Decorated Porous Carbon Structure on β″-Alumina Solid-State Electrolytes for Molten Sodium Batteries by Minyuan M. Li (12616823)

    Published 2022
    “…We present a novel anode interface modification on the β″-alumina solid-state electrolyte that improves the wetting behavior of molten sodium in battery applications. …”
  5. 605

    Interfacial Engineering with a Nanoparticle-Decorated Porous Carbon Structure on β″-Alumina Solid-State Electrolytes for Molten Sodium Batteries by Minyuan M. Li (12616823)

    Published 2022
    “…We present a novel anode interface modification on the β″-alumina solid-state electrolyte that improves the wetting behavior of molten sodium in battery applications. …”
  6. 606

    Interfacial Engineering with a Nanoparticle-Decorated Porous Carbon Structure on β″-Alumina Solid-State Electrolytes for Molten Sodium Batteries by Minyuan M. Li (12616823)

    Published 2022
    “…We present a novel anode interface modification on the β″-alumina solid-state electrolyte that improves the wetting behavior of molten sodium in battery applications. …”
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    Scatter plot for the absolute decrease in CS rates (A) and the relative decrease in CS rates (B) from 2008 to 2016 among hospitals in Guangzhou grouped by their baseline CS rates. by Xiaoyan Xia (560153)

    Published 2019
    “…One circle represents one hospital, with blue (<i>n</i> = 20), green (<i>n</i> = 36), orange (<i>n</i> = 34), and purple (<i>n</i> = 22) representing baseline CS rates of <30%, 30%–39%, 40%–49%, and ≥50%, respectively. The absolute decrease = the CS rate at baseline − the CS rate in Stage 2; the relative decrease = (the CS rate at baseline − the CS rate in Stage 2) ÷ the CS rate at baseline. …”
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    Integration of Segmented Ion Fractionation and Differential Ion Mobility on a Q‑Exactive Hybrid Quadrupole Orbitrap Mass Spectrometer by Sibylle Pfammatter (3226209)

    Published 2021
    “…However, the FAIMS interface has not been available on older generation Orbitrap mass spectrometers such as the Q-Exactive. Here, we report the integration of the FAIMS Pro device with embedded electrical and gas connections to a Q-Exactive HF mass spectrometer. …”
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    Integration of Segmented Ion Fractionation and Differential Ion Mobility on a Q‑Exactive Hybrid Quadrupole Orbitrap Mass Spectrometer by Sibylle Pfammatter (3226209)

    Published 2021
    “…However, the FAIMS interface has not been available on older generation Orbitrap mass spectrometers such as the Q-Exactive. Here, we report the integration of the FAIMS Pro device with embedded electrical and gas connections to a Q-Exactive HF mass spectrometer. …”
  16. 616

    Integration of Segmented Ion Fractionation and Differential Ion Mobility on a Q‑Exactive Hybrid Quadrupole Orbitrap Mass Spectrometer by Sibylle Pfammatter (3226209)

    Published 2021
    “…However, the FAIMS interface has not been available on older generation Orbitrap mass spectrometers such as the Q-Exactive. Here, we report the integration of the FAIMS Pro device with embedded electrical and gas connections to a Q-Exactive HF mass spectrometer. …”
  17. 617

    Integration of Segmented Ion Fractionation and Differential Ion Mobility on a Q‑Exactive Hybrid Quadrupole Orbitrap Mass Spectrometer by Sibylle Pfammatter (3226209)

    Published 2021
    “…However, the FAIMS interface has not been available on older generation Orbitrap mass spectrometers such as the Q-Exactive. Here, we report the integration of the FAIMS Pro device with embedded electrical and gas connections to a Q-Exactive HF mass spectrometer. …”
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