Showing 1 - 13 results of 13 for search '(( significantly alter decrease ) OR ( significantly weaker decrease ))~', query time: 0.22s Refine Results
  1. 1

    Soil viral and microbial interactions facilitate microbial necromass carbon accumulation in the semiarid typical steppe under altered precipitation_Research data by Anonymous Author (7372229)

    Published 2025
    “…The results showed that decreased precipitation significantly reduced microbial necromass carbon (BNC, MNC, and BNC/MNC) and their relative contributions to SOC (BNC/SOC and MNC/SOC), whereas increased precipitation had relatively weaker effects. …”
  2. 2

    Soil viral and microbial interactions facilitate microbial necromass carbon accumulation in the semiarid typical steppe under altered precipitation_Research Data by Cui Han (15263150)

    Published 2025
    “…The results showed that decreased precipitation significantly reduced microbial necromass carbon (BNC, MNC, and BNC/MNC) and their relative contributions to SOC (BNC/SOC and MNC/SOC), whereas increased precipitation had relatively weaker effects. …”
  3. 3

    Granite sample. by Run-Zhi Jia (21262716)

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  4. 4

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  5. 5

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  6. 6

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  7. 7

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  8. 8

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  9. 9

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  10. 10

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

    Published 2025
    “…As the confining pressure increased, the ratio of tensile cracks in rock sample failure decreased, while the ratio of shear cracks increased. …”
  11. 11

    Minimum data set used in the article. by Shizhen Xu (4474321)

    Published 2025
    “…The average total phosphorus (TP) content in cropland soil was slightly higher than in forestland and significantly higher than in grassland. The weaker carbon-sequestration capacity of cropland soil resulted in notably lower C:N (10.13) and C:P (47.38) ratios compared to forestland and grassland. …”
  12. 12

    Concentrations of C, N, and P in time change. by Shizhen Xu (4474321)

    Published 2025
    “…The average total phosphorus (TP) content in cropland soil was slightly higher than in forestland and significantly higher than in grassland. The weaker carbon-sequestration capacity of cropland soil resulted in notably lower C:N (10.13) and C:P (47.38) ratios compared to forestland and grassland. …”
  13. 13

    Table 1_Detailed understanding of reduced geoeffectiveness of solar cycle 24 in association with geomagnetic storms.xlsx by R. Selvakumaran (21290378)

    Published 2025
    “…These findings highlight how reduced heliospheric pressure and weaker solar wind conditions during Solar Cycle 24 significantly influenced geomagnetic storm activity by altering CME expansion and energy transfer to the Earth’s magnetosphere, thereby enhancing our understanding of solar-terrestrial coupling processes and improving the predictive capability of space weather models.…”