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c Nematic phase volume fraction versus graphene oxide concentration.
The parameters considered for optimization were polymer concentration, surfactant concentration, organic phase volume, aqueous phase volume, and theoretical drug loading.
It can be evidenced from Fig. 5 that the increase in phase volume ratio increases the yield owing to the reduction in the bottom phase volume [32].
The rubber phase volume including occlusion was held at 23%.
The mean EEs of these two drugs decreased substantially with the increase in aqueous phase volume.
The phase volume fractions of hydrating concrete were determined using thermodynamic modeling.
In contrast to this, the yield decreased with the increase in phase volume ratio.
The phase volume ratio was maintained at 1 for these set of experiments.
Above the phase volume ratio (PVR = Vorg/Vaq) of 8, the systems display viscoelastic behavior.
The dispersed phase mixing time decreases with the increase of the dispersed phase volume fraction.
Increasing Fe content to 3.5 wt.% enhances β phase volume fraction.
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