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  1. 18961

    MDPC material parameters for snow. by Hanqing Guo (12451176)

    Published 2025
    “…The compaction rate initially increases and then decreases with different snow thicknesses; beyond the tread depth, the load significantly affects the maximum compaction rate, which reaches 504 mm/s. …”
  2. 18962

    The dielectric constant <i>D</i> of the solution. by Hongming Li (296020)

    Published 2025
    “…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
  3. 18963

    Description of the selected nodes. by Hanqing Guo (12451176)

    Published 2025
    “…The compaction rate initially increases and then decreases with different snow thicknesses; beyond the tread depth, the load significantly affects the maximum compaction rate, which reaches 504 mm/s. …”
  4. 18964

    Grading curve of the Ningming Bentonite. by Hongming Li (296020)

    Published 2025
    “…The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. …”
  5. 18965
  6. 18966
  7. 18967

    Raw data of figures. by Qingwen Li (1510687)

    Published 2025
    “…As the net spacing ratio decreases and the number of CFRP layers increases, the peak strength and deformation capacity of the coal cylinders are significantly improved, with the maximum enhancement rate reaching up to 409.36%. …”
  8. 18968

    Test scheme of CFRP-confined coal cylinder. by Qingwen Li (1510687)

    Published 2025
    “…As the net spacing ratio decreases and the number of CFRP layers increases, the peak strength and deformation capacity of the coal cylinders are significantly improved, with the maximum enhancement rate reaching up to 409.36%. …”
  9. 18969

    Tailoring Ionic Conductivity of Polymeric Ionic Liquid Block Copolymers through Morphology Control by Samuel K. J. Adotey (22425591)

    Published 2025
    “…However, recent work demonstrates that the ionic conductivity of a model lamellar material is significantly depressed relative to expectations based on the measured properties of a PIL homopolymer (Coote et al., ACS Polymers Au, 3, 2023). …”
  10. 18970

    Mechanical properties of impregnant. by Qingwen Li (1510687)

    Published 2025
    “…As the net spacing ratio decreases and the number of CFRP layers increases, the peak strength and deformation capacity of the coal cylinders are significantly improved, with the maximum enhancement rate reaching up to 409.36%. …”
  11. 18971

    Finite Element Model of Tire and Snow Runway. by Hanqing Guo (12451176)

    Published 2025
    “…The compaction rate initially increases and then decreases with different snow thicknesses; beyond the tread depth, the load significantly affects the maximum compaction rate, which reaches 504 mm/s. …”
  12. 18972

    Yield Function of the MDPC Model [24]. by Hanqing Guo (12451176)

    Published 2025
    “…The compaction rate initially increases and then decreases with different snow thicknesses; beyond the tread depth, the load significantly affects the maximum compaction rate, which reaches 504 mm/s. …”
  13. 18973

    Wave velocity test of coal cylinder. by Qingwen Li (1510687)

    Published 2025
    “…As the net spacing ratio decreases and the number of CFRP layers increases, the peak strength and deformation capacity of the coal cylinders are significantly improved, with the maximum enhancement rate reaching up to 409.36%. …”
  14. 18974

    Specimen schematic. by Qingwen Li (1510687)

    Published 2025
    “…As the net spacing ratio decreases and the number of CFRP layers increases, the peak strength and deformation capacity of the coal cylinders are significantly improved, with the maximum enhancement rate reaching up to 409.36%. …”
  15. 18975

    Results of parameters. by Qingwen Li (1510687)

    Published 2025
    “…As the net spacing ratio decreases and the number of CFRP layers increases, the peak strength and deformation capacity of the coal cylinders are significantly improved, with the maximum enhancement rate reaching up to 409.36%. …”
  16. 18976

    Alkenyl/Thiol Co-Functionalized Titanium-Oxo Nanoclusters Enable Synergistic Lithography for Enhanced Resolution and Sensitivity by Zuohu Zhou (14258773)

    Published 2025
    “…Such dual cross-linkable group functionalization brought additional thiol–ene click reactions upon exposure to enhance intercluster polymerization, which significantly improved the lithography sensitivity of TOCs, with the required exposure energy being reduced by over 70% (decreasing from >1000 μC/cm<sup>2</sup> of alkenyl-TOC to <300 μC/cm<sup>2</sup> of alkenyl/thiol-TOC). …”
  17. 18977

    Alkenyl/Thiol Co-Functionalized Titanium-Oxo Nanoclusters Enable Synergistic Lithography for Enhanced Resolution and Sensitivity by Zuohu Zhou (14258773)

    Published 2025
    “…Such dual cross-linkable group functionalization brought additional thiol–ene click reactions upon exposure to enhance intercluster polymerization, which significantly improved the lithography sensitivity of TOCs, with the required exposure energy being reduced by over 70% (decreasing from >1000 μC/cm<sup>2</sup> of alkenyl-TOC to <300 μC/cm<sup>2</sup> of alkenyl/thiol-TOC). …”
  18. 18978

    Alkenyl/Thiol Co-Functionalized Titanium-Oxo Nanoclusters Enable Synergistic Lithography for Enhanced Resolution and Sensitivity by Zuohu Zhou (14258773)

    Published 2025
    “…Such dual cross-linkable group functionalization brought additional thiol–ene click reactions upon exposure to enhance intercluster polymerization, which significantly improved the lithography sensitivity of TOCs, with the required exposure energy being reduced by over 70% (decreasing from >1000 μC/cm<sup>2</sup> of alkenyl-TOC to <300 μC/cm<sup>2</sup> of alkenyl/thiol-TOC). …”
  19. 18979

    Defect-Triggered Reversible Phase Transformation for Boosting Electrochemical Performance of Coordination Polymers by Yixiu Xu (11166860)

    Published 2024
    “…Importantly, this work has certified that stepwise increasing/decreasing the concentration of ordered defects gradually triggered reversible phase transformation of CP from nonporous to microporous by charge–discharge cycling, in situ addition of the modulator, and postsynthetic treatment. …”
  20. 18980

    Defect-Triggered Reversible Phase Transformation for Boosting Electrochemical Performance of Coordination Polymers by Yixiu Xu (11166860)

    Published 2024
    “…Importantly, this work has certified that stepwise increasing/decreasing the concentration of ordered defects gradually triggered reversible phase transformation of CP from nonporous to microporous by charge–discharge cycling, in situ addition of the modulator, and postsynthetic treatment. …”