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Retention modeling and resolution optimization for a group of N phenylpyrazole derivatives in micellar electrokinetic chromatography using empirical and physicochemical models

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Table 1. Identification numbers, names and structures of N-phenylpyrazole derivatives studied
Table 2. Empirical equations used for the prediction of electroosmotic flow (t 0 ) and micelles (t m )  migra-tion times Basic equation z value  Equa-tion No
Figure 2. MPRE for electroosmotic flow (t 0 ) and micelle (t m ) migration times by using empirical equation in a MEKC system with (a) n-propanol or (b) n-butanol as the organic modifier
Figure 3. MPRE for the retention factors by using empiri- empiri-cal equations in a MEKC system with (a) n-propanol or (b) n-butanol as the organic modifier.
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