Showing 441 - 460 results of 12,418 for search '(((( algorithm spread function ) OR ( algorithm 1 function ))) OR ( algorithm python function ))', query time: 0.52s Refine Results
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    Posterior for parameter <i>θ</i> of the uniform toy model for different weights in the ABC distance function. by Jonathan U. Harrison (5447603)

    Published 2020
    “…<p>The posterior distribution for parameter <i>θ</i> of the uniform toy model for different weights in the ABC distance function is shown in (a). …”
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    Posterior for parameters <i>θ</i> of the bimodal toy model for different weights in the ABC distance function. by Jonathan U. Harrison (5447603)

    Published 2020
    “…<p>The posterior distribution for parameters <i>θ</i> = (<i>θ</i><sub>1</sub>, <i>θ</i><sub>2</sub>) of the bimodal toy model for different weights in the ABC distance function is shown in (a) and (b). …”
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    Improved Ant Colony Algorithm by AOBEI ZHANG (17657703)

    Published 2024
    “…<p dir="ltr">The core enhancements encompass three strategic improvements:(1) Initially, we prioritize the algorithm's search capability to explore the solution space broadly. …”
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    Performance comparison of mainstream algorithms. by Junjie Lu (160350)

    Published 2025
    “…Finally, the Inner-DIoU loss function is proposed to optimize bounding box regression. …”
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    Optimized algorithm framework diagram. by Xutao Liu (13006965)

    Published 2023
    “…Regressive Function, Multinomial Naive Bayes and Gaussian Naive Bayes Algorithms have lower prediction delay, as low as 0.01s. …”
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    Iteration curve of each algorithm: (a) Convergence curves of the average best fitness for functions F1-F10, (b) Convergence curves of the average best fitness for functions F11-F20 and (c) Correspondence between curve colors and algorithms. by Ruyi Dong (9038174)

    Published 2025
    “…<p>Iteration curve of each algorithm: (a) Convergence curves of the average best fitness for functions F1-F10, (b) Convergence curves of the average best fitness for functions F11-F20 and (c) Correspondence between curve colors and algorithms.…”
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