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The suitable adjustment of water layer thickness and flow velocity can provide a basis to determine a radiation dose experimentally that is high enough for decomposition of the chemicals.
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In the inductor case, the amplitude of the current can be optionally regulated by suitable adjustment of the firing angle, α, leading to a non-sinusoidal current, as shown in Fig. 2b.
The selection of a suitable adjustment method depends on the error rate that one wants to control [ 55].
Though excellent correlations are obtained between the experiments and the predictions, it is demonstrated that similar correlations can be obtained using sliding stress values that differ from the measured one by a factor of ∼2 and by suitable adjustment of the Paris law parameter that characterizes the intrinsic fatigue resistance of the composite.
Considerable improvement in heat transfer is obtainable by employing the external recycle at both ends with a suitable adjustment of the impermeable-sheet position and recycle ratio, instead of using an open conduit.
Then, the multilayer assembly of both cationic polyelectrolyte poly allylamine hydrochloride) (PAH) and anionic polyelectrolyte PAA loaded with the AgNPs previously synthesized (colored PAA-Ag NPs) depends on the degree of ionization of the polymers and their charge density which is perfectly controlled with a suitable adjustment of the pH[47, 48].
If we reduce the Marichev-Saigo-Maeda type fractional integral operator to the Riemann-Liouville fractional integral operator and set (S_{n}^{m_{1},ldots,m_{s} } =1), (eta,v_{2} =0), and make a suitable adjustment in the parameters in equation (3.4), we arrive at the known result given by Kilbas [54], p.117, Eq. (11).
The results show that a considerable heat-transfer efficiency improvement was obtained with a suitable adjustment of the subchannel thickness ratio and recycle ratio.
If we reduce the Marichev-Saigo-Maeda type fractional integral operator to the Riemann-Liouville fractional integral operator and set (S_{n}^{m_{1},ldots,m_{s} } =1), (eta,v_{2} =0), and make a suitable adjustment in the parameters in equation (3.2), then we arrive at the known result given by Saxena et al. [53], p.168, Eq. (2.1).
It is thus possible to create nanostructures by a suitable adjustment of the light field.
A substantial heat-transfer efficiency improvement is obtained by employing such a new recycle type with a suitable adjustment of the impermeable-sheet position and recycle ratio, instead of using the single-pass device without external recycle for Gz>10 and the recycle type of the previous study for Gz>30.
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