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Exact(5)
It is noted that dimensionless temperature enhances with increase in N b while nanoparticle concentration is found decreasing as N b increases.
However, as discussed earlier in optical analysis, optical absorption enhances with increase in deposition time, which may be attributed to the further aggregation of sensitizer in P-120.
It is also observed from the Fig. 13 that the effective thermal conductivity enhances with increase of nanolayer thickness but decreases with increase of particle diameter and this agrees with the results presented by Yu and Choi [47].
As it can be seen from the polarization results (Table 3), the I corr values in all cases decrease in the presence of all three extracts and this decrease enhances with increase in concentrations.
It is clear from Fig. 12 that (R_c) increases with the increasing values of (phi) and t, i.e., the region for (T_z>0) enhances with increase of (phi) and t.
Similar(55)
The field enhancement factorβ enhances with increasing the aspect ratio of the nanorod.
Optical clarity enhances with increasing EGDMA.
The absorption intensity gradually enhances with increasing dopant concentration.
Thus, the [002] texture diminishes and [100], and [101] texture enhances with increasing diameter.
In this study, the fraction of rutile enhances with increasing HCl concentration.
Meanwhile, the rod density in the 3D dandelion-like spheres gradually enhances with increasing HCl concentration.
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