Showing 15,181 - 15,200 results of 49,971 for search '(( 50 ((we decrease) OR (a decrease)) ) OR ( 5 ((point decrease) OR (mean decrease)) ))', query time: 0.98s Refine Results
  1. 15181
  2. 15182

    Experimental setup under ablation experiments. by Long Di (9977453)

    Published 2025
    “…Simulation-based experimental results demonstrate that, under complex obstacle motion scenarios, the proposed method achieves a 55.8% reduction in trajectory tracking error compared with recently proposed improved APF methods and a 41.5% decrease relative to Dynamic Movement Primitives (DMP) baselines. …”
  3. 15183

    Obstacle uniform linear motion scenarios. by Long Di (9977453)

    Published 2025
    “…Simulation-based experimental results demonstrate that, under complex obstacle motion scenarios, the proposed method achieves a 55.8% reduction in trajectory tracking error compared with recently proposed improved APF methods and a 41.5% decrease relative to Dynamic Movement Primitives (DMP) baselines. …”
  4. 15184

    Analysis of the tangential force of the obstacle. by Long Di (9977453)

    Published 2025
    “…Simulation-based experimental results demonstrate that, under complex obstacle motion scenarios, the proposed method achieves a 55.8% reduction in trajectory tracking error compared with recently proposed improved APF methods and a 41.5% decrease relative to Dynamic Movement Primitives (DMP) baselines. …”
  5. 15185

    Table of values for <i>p.</i> by Long Di (9977453)

    Published 2025
    “…Simulation-based experimental results demonstrate that, under complex obstacle motion scenarios, the proposed method achieves a 55.8% reduction in trajectory tracking error compared with recently proposed improved APF methods and a 41.5% decrease relative to Dynamic Movement Primitives (DMP) baselines. …”
  6. 15186

    Static obstacle avoidance scene setup. by Long Di (9977453)

    Published 2025
    “…Simulation-based experimental results demonstrate that, under complex obstacle motion scenarios, the proposed method achieves a 55.8% reduction in trajectory tracking error compared with recently proposed improved APF methods and a 41.5% decrease relative to Dynamic Movement Primitives (DMP) baselines. …”
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  14. 15194

    The schematic diagram of the region <i>O</i><sub>1</sub>. by Long Di (9977453)

    Published 2025
    “…Simulation-based experimental results demonstrate that, under complex obstacle motion scenarios, the proposed method achieves a 55.8% reduction in trajectory tracking error compared with recently proposed improved APF methods and a 41.5% decrease relative to Dynamic Movement Primitives (DMP) baselines. …”
  15. 15195

    Safety and Efficacy of the Omnipod® 5 Automated Insulin Delivery System in Adults with Type 2 Diabetes: From Injections to Hybrid Closed-Loop Therapy by Georgia M Davis (12542253)

    Published 2023
    “…</p> <p><strong>Results:</strong> Participants (N=24) had a mean (±SD) age of 61±8 years with baseline HbA1c 9.4±0.9% (79±10mmol/mol), and diabetes duration of 19±9 years. …”
  16. 15196

    Body temperature dependent platelet count of functional platelets during torpor and arousal in natural hibernating Syrian hamster at 5°C ambient temperature. by Edwin L. de Vrij (550179)

    Published 2014
    “…J) Circulating platelet count is reduced during daily torpor in the Djungarian hamster, and restored upon arousal. Bars represent mean ± SEM of 5 to 9 animals per group. *P<0.05, **P<0.01.…”
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    Data_Sheet_1_Carbon 5–60 Years After Fire: Planting Trees Does Not Compensate for Losses in Dead Wood Stores.docx by Alana J. Clason (12880049)

    Published 2022
    “…Projecting growth to 100 years since fire suggests we may see increasing divergence in carbon stores in planted stands over a full fire-return interval, but these differences remain relatively small [mean (sd): 140.8 (19.6) Mg⋅ha<sup>–1</sup> in planted compared to 136.9 (27.5) Mg⋅ha<sup>–1</sup> in not-planted stands], with 1.4 Mg⋅ha<sup>–1</sup> year<sup>–1</sup> sequestered in not-planted compared to 1.5 Mg⋅ha<sup>–1</sup> year<sup>–1</sup> in planted stands. …”
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