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for any real constant after using the subsequent relation: (2.14).
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As a result, the subsequent relations are true: (2.9).
Then, by using the following relation.
However, if an element is further used in a subsequent relation, it is not possible to determine whether a protein takes part with its phosphorylated, raw or any other form.
and using the relation (3.28).
Using the relation, we obtain.
Since, using the relation (2.4), we have.
Using the differential transmission relation in Eqs.
Using the relation, we can write (32).
Thus, we define the normalized peptide similarity using the relation <img src="http://journals.plos.org/plosone/article/asset?id=info?doi/10.1371/journal.pone.0001831.e003.PNG" class= inline-graphic"/> This equation constitutes the model of peptide similarity used throughout subsequent analysis.
Pro tip: Use the "relations" part in media relations, not jack-booted thuggery.
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