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The applicability of the developed technique is demonstrated by obtaining a solution for ducts with a linear temperature profile.
The aerodynamic development of fully turbulent isothermal jets issuing from rectangular slot-burners was modelled by obtaining a solution to the Reynolds averaged Navier Stokes equations.
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In contrast to the standard FE method, the method enables to solve the crack problem in an efficient way by obtaining a single solution in which the Poisson's ratio ν and the plate thickness B are non-fixed parameters.
As above, this equation is solvable if and only if c q − 1 = − F i p b q − 2. Similarly, by induction, we obtain a solution of system (30) in the form (29). □.
By Proposition 11, we obtain a solution (w_{k_{2}}^{mathfrak{d}_{p}}) of the previous problem by means of a fixed point result in appropriate Banach spaces.
Using the expression of Laplace transform of the temperature, given by Eq. (18), we obtain a solution of the set of Eqs.
By solving the latter equation we obtained a solution that provided the time dynamics of the central moments of the probability distribution Pk(t).
It does this by obtaining solutions that achieve a better balance between post-contingency flows on individual branches and the overall system risk.
Such microstructure can be obtained by a solution treatment in the α-single phase field, followed by a heavy cold rolling operation and a new solution treatment in the α/γ dual phase field.
With the similar method, by setting, we obtain a classical solution of the following problem.
Further analysis shows that, although this can appear as paradoxical, a higher energy efficiency is obtained by a solution with higher boiling point elevation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com