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The phase angle reaches −45° at the capacitor response frequency of 5.6 Hz, which is much higher than activated carbon (0.15 Hz)72.
Experimental results for amplitude response, frequency response, energy harvesting, and efficiency are presented and discussed.
The main response frequency components and the effect of damping coefficients on vibration amplitudes are investigated.
The response frequency corresponds to the amount of fluid within the capacitor's electric field.
A complex structure may have many dominant frequency components in its response frequency spectrum.
Furthermore, a wider range of response frequency is also observed in this structure.
The stimulation time/conditions were subsequently modified to promote a reduction in the man's response frequency.
The forced response (frequency response functions) has been predicted by using a modal expansion.
response, frequency domain predictions and eigen-frequency behavior as functions of disturbance intensity.
A good prediction is obtained for the response frequency of the cylindrical shell panels.
By estimating the dominant response frequency, the displacement phase advance is more accurately applied.
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