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Modes are easily removed or added to simplify or enrich a resonator.
The cylindrical and conical whirling modes are easily uncoupled and separately analysed.
The energies of the hybridized modes are easily understood by the electrostatic interaction between electronic charge densities.
Transitions between these stick-slip modes are easily effected by changing the sliding velocity or normal load.
It can be seen that specific vibration modes are easily excited by manipulating the configuration of electrodes.
Moreover, the odd modes are easily induced by the in-phase bi-dipole, but fully suppressed by the 180° out-of-phase one.
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Disturbances, which are corrected for the DHM mode, are easily shown on these images with the poor sharpness and motion blur worsen by the consequence of longer exposure time of a second.
Certain vibrations in these objects are simple modes that are easily excited and have definite frequencies.
When teams and riders are always in survival mode, ethical lines are easily crossed.
In the second approach, which is theoretically more difficult as we have a single hydrophone, modes are not easily separable and thus, cannot be filtered using classical signal representations such as Fourier transform or time-frequency representation.
Because of limitations in the current data acquisition methods in geotechnical engineering tests, the modes are not easily separated and the experimental dispersion data are often corresponding to the effective phase velocity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com