Showing 161 - 180 results of 431 for search '(( significantly increased decrease ) OR ( significant ((shape decrease) OR (a decrease)) ))~', query time: 0.71s Refine Results
  1. 161
  2. 162

    DataSheet1_Two-decade variability and trend of chlorophyll-a in the Arabian Sea and Persian Gulf based on reconstructed satellite data.docx by Mengmeng Yang (475288)

    Published 2024
    “…Rising SST anomalies (SST_A) correlated with reduced Chl-a anomalies (Chl-a_A) in the western AS, while increased wind anomalies (Wind_A) enhanced Chl-a_A in the western AS but decreased it in the southern PG. …”
  3. 163
  4. 164

    Test scheme. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  5. 165

    Basic physical properties of the soil samples. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  6. 166

    Schematic diagram of WSM test simulator. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  7. 167

    Contents of ions in the soil samples. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  8. 168

    Test device for WSM. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  9. 169

    Supporting data. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  10. 170

    Flow chart of the sample preparation process. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  11. 171

    Particle size curve. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  12. 172

    Compaction curve. by Fang Zheng (54278)

    Published 2025
    “…The moisture content at the upper end of the SC increases with decreasing cold-end temperature. The increase in the number of FTCs exacerbates the salinization of the soil in a certain part of the interior of the SC. …”
  13. 173
  14. 174

    Scheme of g-λ model with larger values λ. by Zhanfeng Fan (20390992)

    Published 2024
    “…The findings suggest that when λ is respectively equal to 4.19, 8.57, 10, and 12.15, the peak particle velocity (PPV) of the transmitted waves is significantly close to the incident wave amplitude. Furthermore, when λ is fixed, the energy transmission coefficient increases with the incident wave amplitude but decreases with the incident wave frequency. …”
  15. 175

    The threshold effect analysis of the BRI on HGS. by Zhihao Wei (10909679)

    Published 2025
    “…Before this threshold, for every unit increase in BRI, HGS increases significantly (β = 2.19, 95% CI = 1.66, 2.72).…”
  16. 176
  17. 177

    Differentially abundant proteins in the haemolymph.  by Louise M. Coates (22298169)

    Published 2025
    “…<p>Volcano plots of the differentially abundant proteins in the haemolymph between infected and uninfected crickets <b>(a)</b>; infected and post-infected crickets <b>(b)</b>; post-infected and uninfected crickets <b>(c)</b>; dehydrated and hydrated crickets <b>(d)</b>; dehydrated and re-hydrated crickets <b>(e)</b>; and re-hydrated and hydrated crickets <b>(f)</b>.Proteins with non-significant differential abundance are represented by circles (grey), proteins with a significant increase in abundance in the first group are represented by triangles (black) and proteins with a significant decrease in abundance in the first group are represented by squares (black). …”
  18. 178

    Accommodating talker variability in noise (Zhang & Peng, 2025) by Kaile Zhang (21763791)

    Published 2025
    “…However, high noise levels significantly hinder this ability. BN presents greater challenges than BMN at lower SNRs, likely due to increased informational masking. …”
  19. 179
  20. 180

    A reas of actual and simulated LULC in 2023. by Firdissa Sadeta Tiye (21222102)

    Published 2025
    “…The analysis revealed significant LULC changes in BMNP, from 1993 to 2023, primarily due to anthropogenic activities, with further changes anticipated between 2023 and 2053.The results showed a notable increase in woodland and shrubs at the expense of grassland and Erica forest. …”