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The results showed that three binary mixture systems produce antagonism.
In this paper, the UDUD was first employed to design four ternary mixture systems.
A composite simplex centroid simplex centroid mixture design is proposed for simultaneously optimizing two mixture systems.
The separation mechanisms of pure and mixture systems are identified through the analyses of simulation results.
According to CAI and EAI, IL aldicarb, IL baygon and IL methomyl mixture systems displayed clear antagonism at relatively low effect regions, while IL pirimicarb mixture systems basically exhibited additive action.
An unreplicated composite mixture design and statistical model are proposed to simultaneously optimize mixture systems having interaction effects.
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The model is obtained by multiplying Scheffé mixture models for each mixture system.
Figure 10 illustrates that the diffusion coefficients of ionic species increase from the pure system to the mixture system.
The mixture system can be represented in the the Z-domain as X ( z ) = A ( z ) S ( z ) (15).
The mixture system was stirred for 30 min. Then, the transparent solution formed was separated into two parts.
The representative UD-Ray mixtures can effectively and rationally describe the diversity in the NBD mixture system.
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