Showing 841 - 860 results of 101,976 for search '(( 12 mm decrease ) OR ( 5 ((((non decrease) OR (point decrease))) OR (a decrease)) ))', query time: 1.49s Refine Results
  1. 841

    Force analysis of the system. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  2. 842

    The self-resetting displacement sensor. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  3. 843

    Fig 13 - by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  4. 844

    Stress nephogram of different models. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  5. 845

    Test block. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  6. 846

    Borehole quality of push-the-bit RSS. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  7. 847

    Test joint. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  8. 848

    Table of step height. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  9. 849

    The working principle of the Welleader system. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  10. 850

    Physical parameters for finite element analysis. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  11. 851

    Local mechanism diagram of Welleader system. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  12. 852

    The well wall step. by Jianbo Jia (717814)

    Published 2024
    “…The simulation results show that for steps of 1mm, 2mm and 3mm height, the optimal polyline angle is concentrated in the range of 10°-11°, in which the Angle of 10.5° has a good performance against the steps of three heights. …”
  13. 853
  14. 854

    Annual treatment frequencies in recurrence and non-recurrence groups. by Yasuyuki Sotani (20114144)

    Published 2025
    “…In the non-recurrence group, visits declined from 10.4 ± 4.5 preoperatively to 7.1 ± 2.2, 3.4 ± 1.3, and 2.6 ± 1.0 at 1, 2, and 3 years postoperatively, respectively (Kruskal-Wallis test, p < 0.001; <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0332941#pone.0332941.g008" target="_blank">Fig 8</a>).…”
  15. 855
  16. 856

    Growth, ammonium metabolism, and photosynthetic properties of <i>Ulva australis</i> (Chlorophyta) under decreasing pH and ammonium enrichment - Fig 4 by Leah B. Reidenbach (4620856)

    Published 2017
    “…<p><b>(A) Total chlorophyll (mg Chl <i>a</i> + <i>b</i> g</b><sup><b>-1</b></sup><b>FW), (B) rETR</b><sub><b>max</b></sub><b>from rapid light curves, and (C) F</b><sub><b>v</b></sub><b>/F</b><sub><b>m</b></sub><b>from rapid light curves for <i>Ulva australis</i> grown under ambient and enriched NH</b><sub><b>4</b></sub><sup><b>+</b></sup><b>treatments across a range of pH</b><sub><b>T</b></sub>. …”
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