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A linear relationship between input current and output voltage, at each frequency of the isolation device, were observed (R2 ≈ 1.0).
The response to this base excitation can be numerically obtained by solving the equilibrium equations for each frequency of interest.
For each frequency of interest, numerical results concern with sound pressure levels upon the hull and in the flowfield.
This not only includes overall time spent with customers, but also factors in the number of accounts touched; time spent with each; frequency of interactions; and breadth and depth of relationships built within them.
Further analysis shows that for each frequency of excitation, the control cost is minimum when the system operates at an optimal amplitude-ratio.
We present benchmarks illustrating the tuning of each channel and isolation among them and the magnetic field profiles at each frequency of interest.
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First, a HFIAS score variable was calculated for each household by summing the codes of each frequency-of-occurrence question.
a Comparison of the strength of each frequency band of the migraineurs and controls.
b Comparison of the path length of each frequency band of the migraineurs and controls.
c Comparison of the clustering coefficient of each frequency band of the migraineurs and controls (*p < 0.016, **p < 0.005).
Each pollinator frequency of interaction was obtained from pollinator censuses in each empirical population (see above).
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