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Consider two following cases: Case 1 (s=1).
for all n ∈ N. To see this, we consider the two following cases for γ.
We recalculate the propagation power of community after each change, which may be one of the two following cases.
Original LB_(_{Keogh}) works only on two time-series sequences of the same length, so to deal with two time-series sequences whose lengths are different within a width r of the Sakoe Chiba band, the lower bounding function needs a slight change in the two following cases.
Now, consider two following cases: (s=1).
We consider the two following cases: (I) (r'=0).
Similar(49)
Then we have the three following cases to consider: 1. ∥ u n ∥ E p → ∞ and ∥ u n ∥ E q → ∞ ; 2.
The three following cases were detected in 2008, the first two cases at the beginning of the year and the third at the end of the year.
This case presentation covers the following two cases.
In the case where, we consider the following two cases.
Consider the following two cases.
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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