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Therefore Theorem 2 is not applicable to this example.
Remark 20 Note that the main theorem of [11] is not applicable to this example.
Thus Theorem 3.7 is applicable to this example with x0 = 0 and y0 = 81.
(g, F) is not a commuting pair in Example 3.4 for which Corollary 3.2 is not applicable to this example.
The main result in [16] is not applicable to this example and hence the generalization is proper.
Therefore, Corollary 3.2 is not applicable to this example, and hence Theorem 3.1 properly contains its Corollary 3.2.
Similar(45)
But such cases would not be applicable to this writer's example, because the board would be deciding on only one sale, not setting a buildingwide minimum-price policy.
Remark 3.3 The above example θ ( t ) ≠ 0 for all t ∈ [ 0, ∞ ), and hence Corollary 3.3 is not applicable to the example, and so Theorem 3.1 properly contains its Corollary 3.3.
Clearly, Corollary 4.4 is not applicable to these examples.
There are many practical examples that are applicable to this context.
Climate change drives vulnerabilities by changing local environmental conditions so rapidly that local environmental knowledge cannot keep pace with and is less applicable to, for example, local food resources.
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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