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2, the problem to be solved is described and the associated differential equations are established.
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Finally, the problems to be solved are described.
We present in this section a summary of the optimal control problem to be solved which is described in previous papers [16, 17, 18, 19].
Depending on the wind tunnel (WT) design peculiarities, this problem may be solved in different ways that are described in this article.
Solving the MODM model is described in 'Solving the MODM model' section.
All structures were solved as described previously.
This heteroscedastic regression problem is solved as described in [ 38].
The inverse problem is solved as described in [ 15].
Technical challenges, which must be solved to fully utilize femtocells potential, are described in [7].
In order to show the scope of this approach, the classical isoperimetric problem is solved and a chemical engineering application is described.
The time-dependent Schrodinger equation is solved to describe the amplitude of being in a QD state C j (t).
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