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The interaction between PSMF and the 2dof system is analyzed by the substructure method and contribution of frequency component from different substructures is identified by setting different level of damping for each substructure.
The characteristic frequency associated with this form of frequency dispersion is not dependent on disk radius, but the contribution of frequency dispersion associated with reactions coupled by adsorbed intermediates may be reduced with the use of small electrodes.
This adjustment was necessary to accommodate for the greater variability inherent to frequency weightings relative to criticality weightings, since this greater variability lead to an undesirable higher contribution of frequency when simple multiplication was used.
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The contribution of frequencies greater than 125 kHz was found to be of the order of 1% for this system.
Nonetheless, it is of interest to consider the maintenance of polymorphism, and the potential contribution of frequency-dependent selection to this process.
Another crucial difference with the STI and SII approaches is that no band importance function is used to weigh contributions of frequency bands.
This method, now called the Lomb-Scargle periodogram, does not require regularly sampled time series and, because the power at different frequencies represents the contribution of that frequency to the variance in the signal, it allows estimation of the statistical significance of the power at a particular frequency [ 29, 31].
In addition, we use a weight on localized Xs,b structures to reduce the contribution of high low frequency interaction where the low frequency has large modulation.
Note that the square of the contribution of each frequency is the power of that frequency to the total spectrum, and the total power of spectral analysis (area under the curve of the power spectrum) is equal to the variance described above (they are different representations of the same measure) [ 11].
Although originally developed for fluorescence microscopy, we have shown that HiLo imaging can also be used in reflectance to reject low frequency veiling glare and enhance the proportional contribution of higher frequency information.
We further controlled for the potential contribution of differential frequency distributions in male and female voices (i.e., greater energy in higher frequencies for female voices) by matching all stimuli in perceived loudness (Fig. 1 a ).
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