Showing 25,581 - 25,600 results of 69,499 for search '(( 50 ((a decrease) OR (teer decrease)) ) OR ( a ((point decrease) OR (mean decrease)) ))', query time: 1.26s Refine Results
  1. 25581
  2. 25582

    Clinical molecular testing for <i>ASXL1</i> c.1934dupG p.Gly646fs mutation in hematologic neoplasms in the NGS era - Fig 2 by Santiago Montes-Moreno (135753)

    Published 2018
    “…The fourth sample was obtained 7 months after SCT and the pathological diagnosis was cellular bone marrow with fibrosis grade 2. A decline in the donor chimerism both in the myeloid and T-lineage cell types was observed at that time point. …”
  3. 25583

    Related to Fig 5. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>E</b>) Cell proliferation assay demonstrates a decrease in cell proliferation (mean ± SEM, <i>n</i> = 3) of BT-474_ST8SIA1<sup>SH</sup> cells compared to BT-474_SCRAM<sup>SH</sup> cells. …”
  4. 25584

    Measuring the development of a medical professional identity through medical school by P. Lusk (17328946)

    Published 2023
    “…Distribution of PIE stage scores across time points were analyzed in the aggregate and individual students were classified as Increase, Stable (no score change) or Decrease based on the trajectories of PIE stage scores over time.…”
  5. 25585
  6. 25586

    Effects of ozone exposure on human epithelial adenocarcinoma and normal fibroblasts cells by Anna Poma (835467)

    Published 2017
    “…However a significative decrease of A549 viability is shown at 72 hours vs. 48 hours in both treated and not-treated cells. …”
  7. 25587
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  9. 25589

    Fig 4 - by Martina Mušković (16834146)

    Published 2023
    “…<p>Singlet oxygen production of TMPyP3 in DEMI water (A) and municipal wastewater (B). The singlet oxygen production was evaluated as the decrease (%) of fluorescence intensity of 1,3-diphenylisobenzofuran (DPBF) (4 μM) at <i>λ</i> = 453 nm in 50% EtOH and 50% DEMI water (A) or municipal wastewater (B) solution with porphyrin TMPyP3 (1 μM). …”
  10. 25590
  11. 25591
  12. 25592

    Vacuum detection. by Liang Ge (541067)

    Published 2024
    “…The experimental results show that: (1) The liquid volume in a tank of vacuum degree within 2.0 Pa and 200 mm interlayer reduced no more than 15.5% after 48 days; (2) Taking the pressure in the tank as the power source, because of environmental differences inside and outside the pipe after 100 m pressure holding delivery, the physical form of liquid and gas could be converted instantly; (3) The continuous discharge time without ice blocking for a tank full of 2 m<sup>3</sup> liquid was about 10.5 min under 25 L dual mode nitrogen pressurization, which is 1/12 of injection time after ground gasification; (4) Based on the temperature decrease trend measured at different positions, the cooling characteristics on liquid gasification jet path are quantified, and the calculation formula of temperature changing with time on the center line of liquid gasification jet is obtained. …”
  13. 25593

    Test of continuous discharge. by Liang Ge (541067)

    Published 2024
    “…The experimental results show that: (1) The liquid volume in a tank of vacuum degree within 2.0 Pa and 200 mm interlayer reduced no more than 15.5% after 48 days; (2) Taking the pressure in the tank as the power source, because of environmental differences inside and outside the pipe after 100 m pressure holding delivery, the physical form of liquid and gas could be converted instantly; (3) The continuous discharge time without ice blocking for a tank full of 2 m<sup>3</sup> liquid was about 10.5 min under 25 L dual mode nitrogen pressurization, which is 1/12 of injection time after ground gasification; (4) Based on the temperature decrease trend measured at different positions, the cooling characteristics on liquid gasification jet path are quantified, and the calculation formula of temperature changing with time on the center line of liquid gasification jet is obtained. …”
  14. 25594

    Technical schematic of system application. by Liang Ge (541067)

    Published 2024
    “…The experimental results show that: (1) The liquid volume in a tank of vacuum degree within 2.0 Pa and 200 mm interlayer reduced no more than 15.5% after 48 days; (2) Taking the pressure in the tank as the power source, because of environmental differences inside and outside the pipe after 100 m pressure holding delivery, the physical form of liquid and gas could be converted instantly; (3) The continuous discharge time without ice blocking for a tank full of 2 m<sup>3</sup> liquid was about 10.5 min under 25 L dual mode nitrogen pressurization, which is 1/12 of injection time after ground gasification; (4) Based on the temperature decrease trend measured at different positions, the cooling characteristics on liquid gasification jet path are quantified, and the calculation formula of temperature changing with time on the center line of liquid gasification jet is obtained. …”
  15. 25595

    Combination of key components. by Liang Ge (541067)

    Published 2024
    “…The experimental results show that: (1) The liquid volume in a tank of vacuum degree within 2.0 Pa and 200 mm interlayer reduced no more than 15.5% after 48 days; (2) Taking the pressure in the tank as the power source, because of environmental differences inside and outside the pipe after 100 m pressure holding delivery, the physical form of liquid and gas could be converted instantly; (3) The continuous discharge time without ice blocking for a tank full of 2 m<sup>3</sup> liquid was about 10.5 min under 25 L dual mode nitrogen pressurization, which is 1/12 of injection time after ground gasification; (4) Based on the temperature decrease trend measured at different positions, the cooling characteristics on liquid gasification jet path are quantified, and the calculation formula of temperature changing with time on the center line of liquid gasification jet is obtained. …”
  16. 25596

    Structure diagram of protective shell. by Liang Ge (541067)

    Published 2024
    “…The experimental results show that: (1) The liquid volume in a tank of vacuum degree within 2.0 Pa and 200 mm interlayer reduced no more than 15.5% after 48 days; (2) Taking the pressure in the tank as the power source, because of environmental differences inside and outside the pipe after 100 m pressure holding delivery, the physical form of liquid and gas could be converted instantly; (3) The continuous discharge time without ice blocking for a tank full of 2 m<sup>3</sup> liquid was about 10.5 min under 25 L dual mode nitrogen pressurization, which is 1/12 of injection time after ground gasification; (4) Based on the temperature decrease trend measured at different positions, the cooling characteristics on liquid gasification jet path are quantified, and the calculation formula of temperature changing with time on the center line of liquid gasification jet is obtained. …”
  17. 25597

    Results and discussion. by Liang Ge (541067)

    Published 2024
    “…The experimental results show that: (1) The liquid volume in a tank of vacuum degree within 2.0 Pa and 200 mm interlayer reduced no more than 15.5% after 48 days; (2) Taking the pressure in the tank as the power source, because of environmental differences inside and outside the pipe after 100 m pressure holding delivery, the physical form of liquid and gas could be converted instantly; (3) The continuous discharge time without ice blocking for a tank full of 2 m<sup>3</sup> liquid was about 10.5 min under 25 L dual mode nitrogen pressurization, which is 1/12 of injection time after ground gasification; (4) Based on the temperature decrease trend measured at different positions, the cooling characteristics on liquid gasification jet path are quantified, and the calculation formula of temperature changing with time on the center line of liquid gasification jet is obtained. …”
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