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Let I be a finite index set and (iin I).
Let Λ = { 1, …, ℓ } be a finite index set.
Let I = {1, 2,..., k} be a finite index set, where k ∈ ℕ.
Let Λ ^ 1 be a finite index subgroup of Λ1and Λ ^ 2 a finite index subgroup of Λ2.
Let (I={1,2,ldots N} ) be a finite index set which denotes the set of players.
[[24], Lemma 3.2] Let G be an oriented, connected, simply connected, nilpotent Lie group and Λ a uniform lattice in G. Let Λ ^ be a finite index subgroup of Λ.
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where the a r are rational in two variables and I is a finite index set.
with coefficients and, which are small functions relative to where is a finite index set, denote (1.15).
Theorem 3.4 Let { ( E i, d i ) } i ∈ I be a family of complete locally compact CAT ( 0 ) spaces, where I is a finite index set.
A differential polynomial P [ w ] is defined as follows: P [ w ] : = ∑ r ∈ I a r M r [ w ], where a r are constants and I is a finite index set.
A differential polynomial is defined by P ( w, w ′, …, w ( m ) ) : = ∑ r ∈ I a r M r [ w ], where a r are constants, and I is a finite index set.
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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