يعرض 1 - 20 نتائج من 377 نتيجة بحث عن '(( 5 ppm decrease ) OR ((( 5 nn decrease ) OR ( _ nn decrease ))))', وقت الاستعلام: 0.34s تنقيح النتائج
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    Temporal profiles of the key BO-NN features. حسب Julia Berezutskaya (9080269)

    منشور في 2020
    "…<p><b>(a)</b> Autocorrelation profiles of 53 key BO-NN features. Per feature, a black line shows the time point where the autocorrelation drops below .5. …"
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    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) حسب Michael T. Robo (1342344)

    منشور في 2022
    "…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …"
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    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) حسب Michael T. Robo (1342344)

    منشور في 2022
    "…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …"
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    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) حسب Michael T. Robo (1342344)

    منشور في 2022
    "…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …"
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    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) حسب Michael T. Robo (1342344)

    منشور في 2022
    "…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …"
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    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) حسب Michael T. Robo (1342344)

    منشور في 2022
    "…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …"