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In the present work, we study the qualitative behavior of two systems of higher-order rational difference equations.
Figure 2 presents the results obtained for the behavior of two systems where a solution of NaOH is added but these two systems were stirred in two different ways.
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Either situation imposes extremely difficult conditions for modeling the diffusional behavior of these two systems because of: (a) the conflicting symmetries between the spherical domains shapes vis-à-vis the pore or ring active interface which acts as a diffusional sink or a source and (b) the near-infinite and heterogeneous concentration gradients which develop at the active interface.
Comparison of the behavior of the two systems Nb-oxide-electrolyte and Ta-oxide-electrolyte showed that the passive films formed on niobium in phosphoric acid solutions do not behave as perfect dielectric like those formed on Ta under the same conditions.
Real frequency data of continental European transmission system are used to simulate the behavior of the two systems in order to determine energy losses during operation.
A parametric study to show the behavior of the two systems when certain parameters are changed, in order to minimize inventories and/or losses, has been carried out.
The conformational transitions of the grafted polymers is found to be the reason behind the observed differences in the dynamic behavior of the two systems.
AFM and TEM images show the segmented block copolymers were microphase separated, and comparison with bisphenol A (BA) PAES-b-PDMS segmented block copolymers revealed complex differences between the morphological behavior of the two systems.
The different behavior of the two systems when the temperature was increased can be again attributed to their different flow-dynamic regimes and severity factors for the liquid phase.
The power conversion efficiency of the device based on CdS PDOT hybrid electrode was determined from photocurrent potential behavior of two electrode system, Au/CdS PDOT/0.1 M Na2S/Pt with a variable resistance in series in the external circuit.
More specifically, the BF-based solution results more responsive and robust to the echo presence, as confirmed by the plots in Figure 15, depicting the ERLE behavior of the two system configurations in the first 5 s of the experiment.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com