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  1. 1261

    Data Sheet 3_Effects of aging on otolith morphology and functions in mice.xlsx by Keita Ueda (19855536)

    Published 2024
    “…Background<p>Increased fall risk caused by vestibular system impairment is a significant problem associated with aging. A vestibule is composed of linear acceleration-sensing otoliths and rotation-sensing semicircular canals. …”
  2. 1262

    Data Sheet 8_Effects of aging on otolith morphology and functions in mice.xlsx by Keita Ueda (19855536)

    Published 2024
    “…Background<p>Increased fall risk caused by vestibular system impairment is a significant problem associated with aging. A vestibule is composed of linear acceleration-sensing otoliths and rotation-sensing semicircular canals. …”
  3. 1263

    Data Sheet 1_Effects of aging on otolith morphology and functions in mice.docx by Keita Ueda (19855536)

    Published 2024
    “…Background<p>Increased fall risk caused by vestibular system impairment is a significant problem associated with aging. A vestibule is composed of linear acceleration-sensing otoliths and rotation-sensing semicircular canals. …”
  4. 1264
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  6. 1266

    Amplitude for A/L = 0.29. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  7. 1267

    Top view of the experimental setup. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  8. 1268

    Amplitude for A/L = 0.338. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  9. 1269

    Parameters of energy harvesting. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  10. 1270

    Graph for Max Amplitude/Length at G<sub>y</sub> = 0. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  11. 1271

    Amplitude for A/L = 0.02. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  12. 1272

    Graph for maximum Frequency at G<sub>y</sub> = 0. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  13. 1273

    Graph for maximum Power at G<sub>y</sub> = 0. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  14. 1274

    Amplitude for A/L = 0.03. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  15. 1275

    Summary of experimentation results. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
  16. 1276

    Piezoelectric eel. by Muhammad Hammad Bucha (21736111)

    Published 2025
    “…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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  20. 1280