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This theory, which states that behaviour normally is modified by changing the strength of stimulus response connections, finds less general acceptance today.
can be widely modified by changing the anodization conditions.
Thus, the hydrophilicity of copolymers can be modified by changing the amount of incorporated itaconic anhydride.
However, it can also be modified by changing the proton fluence.
Besides, the particle size and morphology are modified by changing the capillary size.
Porosity can be modified by changing the ratio of porogen to polymer.
The optical and electronic properties of these HTMs were modified by changing the side arms.
Moreover, geometry of the ripples can be modified by changing the graphene synthesis parameters.
Thus, the hydrophilicity of copolymers can be modified by changing the amount of incorporated itaconic anhydride [27].
These patterns only can be modified by changing the amount of monomer and crosslinking agent in the solution.
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The content of N doping can be tuned in a range of 1.55 4.23% and the distribution of N-containing functional groups can also be modified by changing either the growth temperatures or nitrogen sources (NH3, 1,2-ethylenediamine, and pyridine).
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