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Suppose that the tape alphabet of M has m letters.
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Let N ∼ NegBin(M, k) have mean M and index of aggregation k.
Given m linearly independent vectors (z_{1},z_{2},ldots,z_{m}) in ({mathbb{R}^{n}}), if we structure an m-parallellotope ([z_{1},z_{2},ldots,z_{m}]) by them as edge vectors, then ([z_{1},z_{2},ldots,z_{m}]) has m linearly independent altitude vectors.
end{aligned} (8) One sees (f^_{m}) has m periods in J with period (frac{b-a}{m}), we call each interval ([a+frac{(j-1)(b-a)}{m},a+ frac{j b-a)}{m}]) a periodic interval ofrac{j b-a.
For a network of n reactions and m metabolites, S has m columns and n rows.
A binary tree with m terminal nodes has m - 1 internal nodes.
An item with m + 1 ordered response categories has m thresholds τ k where kε{1,2,... m}.
For the case m T = 2, M has a different form, namely, M = ( 2 − 2 − 2 2 ).
X is not a maximal subgroup of M. Therefore, M has a maximal subgroup M 1such that X≤M 1.
That is, if M is a model for second-order ZFC, then M ⊨ "m has cardinality κ" if and only if the set {m′ ∈ M | M ⊨ m′ ∈ m } really does have cardinality κ.
Preserving a fragment of length m has probability M (m | t, μ ) = e - m (m + 1 ) 2 μ t.
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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