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At the end of this article, torsional rigidity, shape-effects on induced piezoelectric deformation and the range of valid region for linear distribution of electric potential assumption have been studied.
We can limit the range of valid data by adjusting the value of k.
In this dataset, the range of valid pitches is [fmin = 38 Hz, fmax = 2100 Hz], and the maximum polyphony is P = 6.
From the diagram, the majority of the task sets that are schedulable by using WFD fit in a potential feasible region for FFDO heuristic (43.19%) — here, all task sets have migrating tasks and k i values that fit in the range of valid values but no feasible pattern is found.
However, IPv4 prefix databases have the well-known characteristic that prefixes are not uniformly distributed in the range of valid prefix lengths and, as a consequence, it is more likely that a match occurs to prefixes within lengths that concentrate most of the addresses, i.e., the set of Bloom filter and hash table that stores 24-bit prefixes.
The task sets schedulable by using WFD can be divided into four groups: 26.85% of these task sets are schedulable by using both heuristics; 24.51% are not schedulable by using FFDO due to k i 13; 43.19% are not schedulable by using FFDO with a k i value in the range of valid values; and finally, 5.45% of the task sets are deemed not schedulable with FDDO after applying the heuristic.
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In this paper, we report an efficient method to find the ranges of valid bandpass sampling frequency for direct downconverting multiple bandpass analytic signals (single-sideband RF signals).
The algorithm results in the ranges of valid bandpass sampling frequency for the complex signals in terms of bandwidths and band positions of the single-sideband RF signals.
Following the 3GPP specifications, the ranges of valid values for LTE and HSPA are from −140 to −44 dBm[20] and from −120 to −25 dBm[21], respectively.
In [6], Jie-Cherng Liu reported an efficient method to find the ranges of valid bandpass sampling frequency for direct downconverting multiple bandpass analytic signals (single-sideband RF signals).
That means that the zero point--the "no effect" midline--lies within the range of possible valid outcomes with this measure.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com