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As is usual in science, the essential question is whether the conclusion carries conviction, and this is conditioned by the strength of opinion regarding alternative conclusions.
Detailed analysis of all the results obtained led to conclusion that the type of conductivity is conditioned by formation of copper and manganese oxides in the process of preparation.
The conclusion is that the condition of lower substrate temperature accelerates the growth of films and that the condition of lower plasma power controls the films' uniformity.
From the single load free vibration parametric analysis conclusions are derived regarding the conditions of maximum free vibration and cancellation of the deck response.
For a piecewise generalized Bézier-like surface with G 2 smooth continuity, the following conclusions are established under the condition that the control mesh points and G 2 smooth continuity of the surface remain unchanged.
However, neither conclusions were robustly found across conditions or methods, respectively (see Tables 1 and 2).
The general conclusion is that reducing conditions have been greatly underestimated as a limiting factor for sulphur capture in FBBs.
This conclusion is contingent on conditions of γ/ELF exposure used and the power of the study that we estimate to be sufficient to exclude an overall ELF effect of 10 15% (2SE).
Lastly, if contamination did occur, it would have occurred equally under control and experimental conditions, and our conclusions are based on differences between control and experimental conditions.
However, the aforementioned conclusions are deduced under an ideal condition without considering current limitation.
This result holds for both Dirichlet and Neumann eigenvalues, and similar conclusions are derived for Robin boundary conditions and Schrödinger eigenvalues of potentials that grow at infinity.
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