Showing 8,441 - 8,460 results of 13,991 for search '(( significant ((changes decrease) OR (largest decrease)) ) OR ( significant effect decrease ))', query time: 0.49s Refine Results
  1. 8441

    Transcriptomic analysis of AMPK and HZL-1 mutants reveals widespread gene expression differences predominantly in the germ line. by Sabih Rashid (5618807)

    Published 2025
    “…<p><b>A)</b> and <b>B)</b> Bubble plots depicting most enriched GO terms in <i><i>daf-2</i></i>, <i><i>daf-2, aak(0)</i>,</i> and <i><i>aak(0); hzl-1</i></i> transcriptomes, ranked by significance based on p-value. Changes in gene expression in dauer larvae depicted in <b>A)</b>, and post-dauer in <b>B)</b> Top: Comparison of <i><i>aak(0)</i></i> vs. …”
  2. 8442

    LSTM model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  3. 8443

    CNN model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  4. 8444

    Ceramic bearings. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  5. 8445

    Geometric contact arc length model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  6. 8446

    Indentation fracture mechanics model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  7. 8447

    Grinding particle cutting machining model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  8. 8448

    Three stages of abrasive cutting process. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  9. 8449

    CNN-LSTM action recognition process. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  10. 8450

    Data source and description. by Yunxia Zhang (30848)

    Published 2025
    “…<div><p>It is significant to explore the evolution pattern and driving mechanism of non-grain of cultivated land in the main grain-producing areas to promote the sustainable development of agriculture and guarantee national food security. …”
  11. 8451

    Analytical framework. by Yunxia Zhang (30848)

    Published 2025
    “…<div><p>It is significant to explore the evolution pattern and driving mechanism of non-grain of cultivated land in the main grain-producing areas to promote the sustainable development of agriculture and guarantee national food security. …”
  12. 8452

    Granite sample. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  13. 8453

    X-ray diffractometer and mineral composition. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  14. 8454

    Continuous-discontinuous coupling model. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  15. 8455

    FLAC-PFC coupling calculation principle. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  16. 8456

    Energy evolution characteristics of granite. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  17. 8457

    Granite bond failure characteristic map. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  18. 8458

    Drawing test data. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  19. 8459

    Basic parameters of model. by Run-Zhi Jia (21262716)

    Published 2025
    “…This transition from brittle to plastic failure in granite was effectively inhibited by confining pressure, which altered the failure process. …”
  20. 8460

    Location of the study area. by Yunxia Zhang (30848)

    Published 2025
    “…<div><p>It is significant to explore the evolution pattern and driving mechanism of non-grain of cultivated land in the main grain-producing areas to promote the sustainable development of agriculture and guarantee national food security. …”