Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation: 2ClO2(aq) + 2OH-(aq) ClO2-(aq) + ClO3-(aq) + H2O(l)
A kinetic study of this reaction under a certain set of conditions yielded the data below. ![Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation: 2ClO<sub>2</sub>(aq) + 2OH<sup>-</sup>(aq) \rarr ClO<sub>2</sub><sup>-</sup>(aq) + ClO<sub>3</sub><sup>-</sup>(aq) + H<sub>2</sub>O(l) A kinetic study of this reaction under a certain set of conditions yielded the data below. A) rate = k[ClO<sub>2</sub>][OH<sup>-</sup>] B) rate = k[ClO<sub>2</sub>]<sup>2</sup>[OH<sup>-</sup>] C) rate = k[ClO<sub>2</sub>][OH<sup>-</sup>]<sup>2</sup> D) rate = k[ClO<sub>2</sub>]<sup>2</sup>[OH<sup>-</sup>]<sup>2</sup> E) rate = k[ClO<sub>2</sub>]<sup>4</sup>[OH<sup>-</sup>]](https://d2lvgg3v3hfg70.cloudfront.net/TB3244/11ea7995_664a_fdd4_911b_41b41974ea23_TB3244_00.jpg)
A) rate = k[ClO2][OH-]
B) rate = k[ClO2]2[OH-]
C) rate = k[ClO2][OH-]2
D) rate = k[ClO2]2[OH-]2
E) rate = k[ClO2]4[OH-]
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