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Results show that timing overhead of less than 11 ns can be expected.
Comparing the results of four-objective optimization with the results of separately run three and two-objective optimization problems reveals that Q and Ns can be used interchangeably.
For the geometries studied, pulses from 17too 491 ns can be achieved, with energies ranging from 11 to 74 μJ and repetition rates from 0.06 to 2.5 MHz.
The minimum impeller speed required for the gas induction (Ncr) in hollow shaft impellers can be predicted; the minimum impeller speed required for surface aeration (Ns) can also be predicted.
Experiments conducted with an iron-based metallic glass (1K101) test induction cell demonstrate that a train of three ∼250 kV pulses separated by 800 ns can be obtained in the induction gap of the cell without resetting the magnetic cores between pulses.
Results for other values of Ns can easily be obtained.
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The "N" can also be problematic.
Those figures, however, assume that N can grow arbitrarily large.
Now, that n can be multiplied to cancel out.
Dynamic loading of up to 1500 N can be provided.
The result, says McGaraghan, is that Nest can maximize energy savings and minimize annoyance to residents.
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