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The iron content and hardness of the bright coating change with applied current density.
The morphology and microstructure of coating change significantly with deposition temperature.
Since both the capacitance and the resistance of a polymer coating change as it absorbs water, electrochemical impedance spectroscopy (EIS) gives a general idea of how much water a polymer has been absorbed.
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The microhardness of the coating changes in a gradient trend.
The surface analysis showed that the coating changed the roughness of the counter-surfaces.
While normal cosmetics can mask imperfections on the skin, the new coating changes the way skin behaves by giving it the elasticity of young skin.
The morphology of Cu coating changes from cauliflower-like structure to angular shape with increase in bath temperature and pH.
Crystal structure of the coating changes from hexagonal Cr2N to cubic CrN with increasing nitrogen content.
When the temperature is above 500 °C, the coating changes to be primarily δ phase.
By increasing ICP power, the preferred orientation of the CrB2 coating changed from (101) to (001).
The microstructure of the coating changes to a high crystalline two-phase system of α-MoSi2 and hexagonal Mo5Si3.
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