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Continuing this procedure we get a sequence satisfying (3.2).
By manipulating above procedure we get the following sets.
By manipulating the above procedure, we get the following sets.
Continuing this procedure we get two sequences and satisfying and (4.2).
By using this procedure, we get optimum f factor of 0.3.
After performing the root-cutting procedure, we get four individual broadcast woods as drawn in Figure 5b.
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After these procedures, we got a gene set with 2,325 genes.
We repeat this procedure until we get k teams.
Repeating this procedure -times, we get the equation (2.11).
Moreover, the degree of vertex x ⌊ n 2 ⌋ + 2 is ⌊ n 2 ⌋ + 1 and the degree of vertex x ⌊ n 2 ⌋ + 3 is ⌊ n 2 ⌋ + 2. the degree of vertex x ⌊ n 2 ⌋ + 2 is ⌊ n 2 ⌋ + 1 and. the degree of vertex x ⌊ n 2 ⌋ + 3 is ⌊ n 2 ⌋ + 2. Now, if we keep following the same procedure, then we get that.
Applying the decoding procedure, first, we get syndromes s 1 = r 1 H 1 T = ( s 1, 1, s 1, 2 ) and s 2 = r 2 H 2 T = ( s 2, 1 s 2, 2 s 2, 3 s 2, 4 ), Open image in new window.
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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