Showing 2,321 - 2,340 results of 4,637 for search 'significantly ((((lower decrease) OR (nn decrease))) OR (linear decrease))', query time: 0.46s Refine Results
  1. 2321

    Test road monitoring results. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  2. 2322

    Schematic diagram of the wet/dry cycle process. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  3. 2323

    Quantitative analysis table of mix composition. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  4. 2324

    Basic physical indexes of red clay. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  5. 2325

    Sample preparation process diagram. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  6. 2326

    Layout plan of settlement monitoring points. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  7. 2327

    SCA-2 curing agent basic parameters. by Yunke Liu (4839084)

    Published 2024
    “…SCA-2 water stabilizer reduces the strength of the mixture, but significantly improve the water stability performance of the mixture, the reason SCA-2 water stabilizer active ingredients and mixing particles of physicochemical reaction, the content of ettringite in the mixture is lower than the content of the mixture not mixed with water stabilizers, the generation of quartz, white mica, and kaolinite and other hydrophilic poor material increases, the surface of the cementitious material increases, the seepage channel is reduced, so the strength is reduced, and water stability performance is improved. …”
  8. 2328

    Scatterplots of respiratory rate and age by sex. by Ina-Maria Rückert-Eheberg (2824901)

    Published 2025
    “…Five percent of the participants had values lower than 12.06 brpm, and five percent had values above 20.06 brpm (95<sup>th</sup> percentile). …”
  9. 2329

    Flow chart of the study population. by Ina-Maria Rückert-Eheberg (2824901)

    Published 2025
    “…Five percent of the participants had values lower than 12.06 brpm, and five percent had values above 20.06 brpm (95<sup>th</sup> percentile). …”
  10. 2330
  11. 2331

    The ADMET analysis of the selected compounds. by Ali Alisaac (14658440)

    Published 2025
    “…MD simulations revealed stability in the LasI-Sulfamerazine complex, with lower RMSD compared to LasI-Sulfaperin and QscR complexes. …”
  12. 2332

    AMDET profiling parameters and shorting criteria. by Ali Alisaac (14658440)

    Published 2025
    “…MD simulations revealed stability in the LasI-Sulfamerazine complex, with lower RMSD compared to LasI-Sulfaperin and QscR complexes. …”
  13. 2333

    Baseline characteristics of the study population. by Hanbin Wu (14016246)

    Published 2025
    “…Among underweight women, preconception hypoglycemia was associated with a lower risk of medical abortion, miscarriage or early stillbirth, LGA, and PID, while overweight women had a lower risk of macrosomia and LGA. …”
  14. 2334

    <i>TcPiezo-CKO</i> responses to hypoosmotic stress. by Guozhong Huang (673424)

    Published 2025
    “…(D) Tet-induced <i>TcPiezo2 Tet-OFF</i> cells (+Tet) had a significant decrease of intracellular Ca<sup>2+</sup> rise, compared to non-induced cells (-Tet). 100 µ M EGTA was added to remove extracellular Ca<sup>2<i>+</i></sup>, abolishing Ca<sup>2+</sup> entry, as indicated. …”
  15. 2335

    Absolute β convergence results. by Ke Liu (121889)

    Published 2025
    “…Compared with metropolitan agglomerations such as Nanjing, Wuhan, Fuzhou, Changsha-Zhuzhou-Xiangtan, Chongqing, and Chengdu, the Xi’an metropolitan agglomeration had a lower population agglomeration level, with a significant gap. …”
  16. 2336

    Conditional β convergence results. by Ke Liu (121889)

    Published 2025
    “…Compared with metropolitan agglomerations such as Nanjing, Wuhan, Fuzhou, Changsha-Zhuzhou-Xiangtan, Chongqing, and Chengdu, the Xi’an metropolitan agglomeration had a lower population agglomeration level, with a significant gap. …”
  17. 2337

    Markov transition probability matrix (k = 4). by Ke Liu (121889)

    Published 2025
    “…Compared with metropolitan agglomerations such as Nanjing, Wuhan, Fuzhou, Changsha-Zhuzhou-Xiangtan, Chongqing, and Chengdu, the Xi’an metropolitan agglomeration had a lower population agglomeration level, with a significant gap. …”
  18. 2338

    Markov transition probability matrix (k = 4). by Ke Liu (121889)

    Published 2025
    “…Compared with metropolitan agglomerations such as Nanjing, Wuhan, Fuzhou, Changsha-Zhuzhou-Xiangtan, Chongqing, and Chengdu, the Xi’an metropolitan agglomeration had a lower population agglomeration level, with a significant gap. …”
  19. 2339

    Regression results. by Ke Liu (121889)

    Published 2025
    “…Compared with metropolitan agglomerations such as Nanjing, Wuhan, Fuzhou, Changsha-Zhuzhou-Xiangtan, Chongqing, and Chengdu, the Xi’an metropolitan agglomeration had a lower population agglomeration level, with a significant gap. …”
  20. 2340

    Analysis of differential microbiome and classification prediction model between case and control groups. by Chuan Zhang (187157)

    Published 2025
    “…<p><b>(A)</b> Linear discriminant analysis [LDA; (log10)>2] and (B) effect size (LEfSe) analysis revealed significant differences (P < 0.01) in the microbiota of the case (orange, negative score) and control groups (blue, positive score) groups. …”