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Film thickness was controlled by changing the concentration of the PS solution and spin-coating rates.
The size of nanoparticles was controlled by changing the pH value of the reaction mixture.
The morphology of the 2D microarrays can be controlled by changing the solvent, reducer, and surfactant.
The orifice plate displacement is controlled by changing the voltage applied to the transducer.
The fish's forward swimming speed was controlled by changing the flapping frequency of the caudal fin.
The morphology of the units can be controlled by changing the solvent and reducer.
The size of the Eu-doped TiO2nanodots can be controlled by changing the preparation condition.
The detailed morphologies of the nanostructures can be controlled by changing the etching condition.
Therefore, the arc voltage can be controlled by changing the arc length (Naidu et al. 2003).
The initial proton concentration is controlled by changing the wt% of PSS in the reaction medium.
The morphology and electrical properties of such structures can be controlled by changing the growth time.
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