Sentence examples for satisfied for at from inspiring English sources

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If purpose compliance is satisfied for at least one policy, the process continues, otherwise it is immediately blocked due to the missing authorizations.

More generally, we call C ⊂ N a cut set for an objective reaction set J ⊂ N if the wild type is able to sustain flux through every reaction in J and Equation 1 is satisfied for at least one j ∈ J.

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Are customers really satisfied, for example, at an American-style supermarket that may have high productivity among its workers but customers wait in long lines only to meet busy and blunt cashiers?

Each minigame is intended to require only about 15-20 minuthoughhough they include multiple levels that should keep gamers satisfied for hours at a time.

Let x ∗ be a weakly efficient solution to problem (FP), and let the constraint qualification (1) be satisfied for h at x ∗.

Moreover, by taking (A=bigl ( {scriptsizebegin{matrix} frac{1}{sqrt{3}} & 0 cr 0 & frac{1}{sqrt{3}} end{matrix}} bigr )), we have (|A|<1), and one can check that the contractive condition (3) holds for all edges that belong to the graph G. Furthermore, the contractive condition (2) is not satisfied, for example, at (x=1), (y=7).

In agreement with the GFC, the geometric center of the disk is the only point at which the conditions are satisfied for tensile failure at a value equal to the uniaxial tensile strength (Huang et al. 2014).

The thermal (Eq. 1) and more strict acoustic confinement (Eq. 2) are satisfied for these sizes at the short subnanosecond and picosecond laser pulses.

C n ? 2 - ? i = 1 I n c i, i 2 | < d 2     these two conditions are satisfied for all n=1,2,3 at the same time, break the loop.

Using Matignon's results [10], it follows that the linear autonomous system (3.3) is asymptotically stable if | arg | > α π 2 is satisfied for all eigenvalues of matrix J at the equilibrium point E = ( x 1 ∗, x 2 ∗, x 3 ∗ ).

So, equation (2.9) at ε = 0 and T ± = T ± becomes q − ( − T − = q + ( T +. which is satisfied for α = 0. Now we look at equation (2.10).

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