Showing 1 - 20 results of 306 for search '(((( 50 ppm decrease ) OR ( 5 ppm decrease ))) OR ( 50 nn decrease ))', query time: 1.13s Refine Results
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    PPM1A facilitates both nuclear distribution and transcription potency of YAP/TAZ. by Ruyuan Zhou (10197187)

    Published 2021
    “…<b>(B–D)</b> Transcription potency of YAP (5 ng), which was suppressed by coexpression of MST1 (50 ng) (B), LATS1 (500 ng) (C), or MAP4K1 (50 ng) (D), was markedly recovered by cotransfection of wild-type PPM1A but not the enzyme-dead PPM1A (D239N). …”
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    S3 File - by Abdullah Niaz (16955618)

    Published 2023
    “…At higher concentrations some desorption was observed (36% at 50 ppm) but was reduced at lower concentrations (1–3% at < 5 ppm). …”
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    S1 File - by Abdullah Niaz (16955618)

    Published 2023
    “…At higher concentrations some desorption was observed (36% at 50 ppm) but was reduced at lower concentrations (1–3% at < 5 ppm). …”
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    Key properties of MCPA. by Abdullah Niaz (16955618)

    Published 2023
    “…At higher concentrations some desorption was observed (36% at 50 ppm) but was reduced at lower concentrations (1–3% at < 5 ppm). …”
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    S2 File - by Abdullah Niaz (16955618)

    Published 2023
    “…At higher concentrations some desorption was observed (36% at 50 ppm) but was reduced at lower concentrations (1–3% at < 5 ppm). …”
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    Pulse Ultrasound-Based Response Enhancement of a MOX Gas Sensor by Yumin Yang (5737235)

    Published 2024
    “…For 2 ppm methanol, the RE by the pulse ultrasound is 50%, relative to the continuous ultrasound, when the pulse width, duty ratio, and working frequency are 0.4 ms, 50%, and 110.1 kHz, respectively. …”
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    Pulse Ultrasound-Based Response Enhancement of a MOX Gas Sensor by Yumin Yang (5737235)

    Published 2024
    “…For 2 ppm methanol, the RE by the pulse ultrasound is 50%, relative to the continuous ultrasound, when the pulse width, duty ratio, and working frequency are 0.4 ms, 50%, and 110.1 kHz, respectively. …”
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    TEMPO-Oxidized Microcrystalline Cellulose for Rapid Adsorption of Ammonium by Jia Hui Ong (12085606)

    Published 2022
    “…The adsorption performance of the material was minimally influenced by a pH range of 5.0–9.0 but substantially affected by the presence of competing ions. …”
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    Fig 8 - by B. Ulfhake (6293984)

    Published 2022
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    Fig 11 - by B. Ulfhake (6293984)

    Published 2022
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    Fig 6 - by B. Ulfhake (6293984)

    Published 2022
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    Fig 7 - by B. Ulfhake (6293984)

    Published 2022
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