Showing 1 - 20 results of 84 for search '(( significant ((gap decrease) OR (a decrease)) ) OR ( significant optimization model ))~', query time: 0.57s Refine Results
  1. 1

    Model framework. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  2. 2
  3. 3

    SD under different weights. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  4. 4

    Vehicle travel time. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  5. 5

    SD under different penetration rates. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  6. 6

    Notation description. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  7. 7

    Five-stage speed adjustment. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  8. 8

    Mean TTC under different weights. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  9. 9

    SD and mean TTC under different weights. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  10. 10

    Parameter values. by Jianrong Cai (14245136)

    Published 2024
    “…Firstly, a CAV speed optimization model is established based on a shooting heuristic algorithm. …”
  11. 11

    How the Layer Alignment in Two-Dimensional Nanoporous Covalent Organic Frameworks Impacts Its Electronic Properties by Kuber Singh Rawat (13823696)

    Published 2022
    “…Different stacking configurations also profoundly affected the electronic band structure of COFs as the interlayer π–π interactions are significantly impacted by the layer offset. Evidently, with decreasing layer offsets, the π–π interactions increase due to the layer alignment, leading to a decrease in the band gap and an increase in interlayer charge mobility. …”
  12. 12

    How the Layer Alignment in Two-Dimensional Nanoporous Covalent Organic Frameworks Impacts Its Electronic Properties by Kuber Singh Rawat (13823696)

    Published 2022
    “…Different stacking configurations also profoundly affected the electronic band structure of COFs as the interlayer π–π interactions are significantly impacted by the layer offset. Evidently, with decreasing layer offsets, the π–π interactions increase due to the layer alignment, leading to a decrease in the band gap and an increase in interlayer charge mobility. …”
  13. 13

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  14. 14

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  15. 15

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  16. 16

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  17. 17

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  18. 18

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  19. 19

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  20. 20

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”