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In practice frequencies can be processed up to 40 kHz.
The relevant frequencies can be higher than a thousand times a second.
Resonance frequencies can be determined by linearization of this model.
The tuning frequencies can be controlled by the splitter location.
By iterating through the sine table at different speeds, different frequencies can be produced.
In this way, low and high pass filters with arbitrary cutoff frequencies can be specified.
Because they do not overlap, the beams' radio frequencies can be reused to carry local signals in different markets.
By measuring the frequency response, the resonant frequencies can be found and the amplitude of the transferred voltage at these frequencies can be compared.
More beams also mean satellite frequencies can be reused more often, allowing for greater capacity.
In addition, different oscillation frequencies can be obtained by the same STRO depending on its initialization.
It may appear that natural frequencies can be manipulated as an afterthought.
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