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The excitations of high amplitude and frequency lead to a vibrational response coupled to a shock response of the joints.
The results show that higher bandwidth and lower structural frequency lead to more interactions between the mechanical subsystem and the control subsystem.
Two physical parameters, the oscillation amplitude and frequency, lead to two non-dimensional parameters, the Reynolds number, Re, and Strouhal number, St.
Exact integrations over surface and frequency lead to an expression for the total root mean square displacement response in terms of the characteristics of the structure and flow.
It is found that different ratios of the longitudinal vibration frequency to the bending vibration frequency lead to superharmonic response or sub-harmonic response.
Controlling for company and market level variables, the results suggest that AH shares have higher information asymmetry than H shares in Period 2 and Period 3 but not Period 1, indicating that higher financial reporting frequency lead to lower information quality in the A share market.
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An increased driving frequency leads to a smaller mean droplet diameter, which increases the humidification efficiency.
The maximum operating frequency led to the choice of IGBT inverters.
The IDR spectra confirm that generally increasing non-dimensional frequency leads to amplification of IDRs.
Finally, it is found that the pulsed motion of fluid with high frequency leads to suppression of particle fluctuating motion.
However, the need to have an inertial actuator with a low resonance frequency leads to unwanted static deflections of the actuator proof-mass.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com