Showing 13,121 - 13,140 results of 102,180 for search '(( a web decrease ) OR ( 5 ((((we decrease) OR (a decrease))) OR (nn decrease)) ))', query time: 0.95s Refine Results
  1. 13121
  2. 13122

    Individual salivary IgA and IgG titers. by Kenny Nguyen (7361624)

    Published 2024
    “…Overall, SARS-CoV-2-specific salivary IgA titers peaked 2 weeks after each vaccine dose, followed by a sharp decrease during the following weeks. …”
  3. 13123

    Five main steps of MATSim. by Jingfa Ma (20396406)

    Published 2024
    “…Results indicate that enhancements in vehicle range and charging efficiency slightly decrease the use of autonomous vehicles by 2.5%, as the existing vehicle specifications already meet daily travel needs in Shanghai. …”
  4. 13124

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  5. 13125

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  6. 13126

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  7. 13127

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  8. 13128

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  9. 13129

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  10. 13130

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  11. 13131

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  12. 13132

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  13. 13133

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
  14. 13134

    Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al<sub><i>y</i></sub>Ge<sub>46–<i>y</i></sub> Based Type I Germanium Clathrates by Andrew Dopilka (5048555)

    Published 2018
    “…From density functional theory calculations, we find that Li insertion into the three framework vacancies in Ba<sub>8</sub>Ge<sub>43</sub> is energetically favorable, with a calculated lithiation voltage of 0.77 V versus Li/Li<sup>+</sup>. …”
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  17. 13137
  18. 13138

    Table_5_Computation of Antigenicity Predicts SARS-CoV-2 Vaccine Breakthrough Variants.pdf by Ye-Fan Hu (10307357)

    Published 2022
    “…Based on this correlation, we obtained a computational model for the receptor-binding domain (RBD) of the spike protein to predict the fold decrease in virus–antiserum neutralization titers with high accuracy (~0.79). …”
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