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The optimum modification condition was obtained from variance analysis.
In order to find the optimum modification condition, orthogonal experiment was adopted.
SEM observation showed that adequately controlling thermal modification condition results in a wide variety of morphologies.
Four-factor (temperature, pH, time and amount of dendrimer), five-level central composite design, artificial intelligence methods called group method of data handling neural network and imperialist competitive algorithm were used to optimize the modification condition.
This can be due to that ISP in one DNA structure can ensure the completely same modification condition and an equal stoichiometric ratio between sP1 and sP2, and furthermore the cross interference between sP1 and sP2 can be successfully prevented by regulating the complementary position of sP1 and sP2.
Given this, we determine the optimum modification condition: D3B3A2E2C2F3.
Similar(48)
Optimal modification conditions were determined.
The modification conditions were examined in detail.
Response surface methodology (RSM) was used to determine the optimal modification conditions.
The modified CB samples include oxidised CB and ultrasound-treated CB under different modification conditions.
Thus, physical adsorption is minimized by thorough washing and optimization of the modification conditions.
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