Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation: 2C10₂(aq) + 2OH(aq)-ClO₂ (aq) + CIO, (aq) + H₂O(l) Under a certain set of conditions, the initial rate of disappearance of chlorine dioxide was determined to be 2.30 x 10 M/s. What is the initial rate of appearance of chlorite ion under those same conditions? A B 5.75 x 10-² M/s 4.60 x 10-¹ M/s 1.15 x 10-¹ M/s 2.30 x 10-¹ M/s E 9.20 x 10-1 M/s

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter18: Chemical Kinetics
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Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation:
2C1O₂(aq) + 2OH (aq)- ClO₂ (aq) + CIO, (aq) + H₂O(1)
Under a certain set of conditions, the initial rate of disappearance of chlorine dioxide was determined to be 2.30 x 10 M/s. What
is the initial rate of appearance of chlorite ion under those same conditions?
5.75 x 10-² M/s
4.60 x 10-¹ M/s
A
B
1.15 x 10-¹ M/s
2.30 x 10-¹ M/s
E 9.20 x 10-¹ M/s
Transcribed Image Text:Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation: 2C1O₂(aq) + 2OH (aq)- ClO₂ (aq) + CIO, (aq) + H₂O(1) Under a certain set of conditions, the initial rate of disappearance of chlorine dioxide was determined to be 2.30 x 10 M/s. What is the initial rate of appearance of chlorite ion under those same conditions? 5.75 x 10-² M/s 4.60 x 10-¹ M/s A B 1.15 x 10-¹ M/s 2.30 x 10-¹ M/s E 9.20 x 10-¹ M/s
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