Showing 2,101 - 2,120 results of 9,439 for search 'significantly ((((we decrease) OR (((nn decrease) OR (mean decrease))))) OR (linear decrease))', query time: 0.61s Refine Results
  1. 2101

    Structure of BPNN. by Xiying Wang (4859998)

    Published 2025
    “…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
  2. 2102

    The workflow of EGA-BPNN. by Xiying Wang (4859998)

    Published 2025
    “…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
  3. 2103

    S1 Data - by Xiying Wang (4859998)

    Published 2025
    “…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
  4. 2104

    Algorithm flow of the GA-BPNN model. by Xiying Wang (4859998)

    Published 2025
    “…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
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  10. 2110

    The Throttle Effect in Metal–Organic Frameworks for Distinguishing Water Isotopes by Xiao Xiao (99147)

    Published 2024
    “…By monitoring fluorescence intensity changes in Ura, the transport diffusion process could be quantified to reveal the diffusion constant of solvents. When we pushed the Ura occupancy to its limit (from 59% to 76% and 98%), the diffusion rate decreases by 2 orders of magnitude. …”
  11. 2111

    The Throttle Effect in Metal–Organic Frameworks for Distinguishing Water Isotopes by Xiao Xiao (99147)

    Published 2024
    “…By monitoring fluorescence intensity changes in Ura, the transport diffusion process could be quantified to reveal the diffusion constant of solvents. When we pushed the Ura occupancy to its limit (from 59% to 76% and 98%), the diffusion rate decreases by 2 orders of magnitude. …”
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