QUESTION 2 Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation: (1) Balance the given equation first: CIO2(aq) + он (аq) -> CIO2 (ag) + CIO3"(аq) + H20() (2) Give the rate expression for this reaction (Provide the image of your answer on question 3) (3) Under a certain set of conditions, the initial rate of disappearance of hydroxide ion was determined to be 2.30 x 10-1 M/s. What is the initial rate of appearance of water under those same conditions? Significant figure: 2

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ChapterU6: Showtime: Reversible Reactions And Chemical Equilibrium
SectionU6.2: How Backward: Reversible Reactions
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QUESTION 2
Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation:
(1) Balance the given equation first:
CIO2(aq) +
OH (aq) --> CI02 (aq) + CIO3¬(aq) + H20(1)
(2) Give the rate expression for this reaction (Provide the image of your answer on question 3)
(3) Under a certain set of conditions, the initial rate of disappearance of hydroxide ion was determined to be 2.30 x 10-1 M/s. What is the initial rate of appearance
of water under those same
conditions?
Significant figure: 2
QUESTION 3
Give the rate expression for the given reaction on number 2
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Transcribed Image Text:QUESTION 2 Chlorine dioxide reacts in basic water to form chlorite and chlorate according to the following chemical equation: (1) Balance the given equation first: CIO2(aq) + OH (aq) --> CI02 (aq) + CIO3¬(aq) + H20(1) (2) Give the rate expression for this reaction (Provide the image of your answer on question 3) (3) Under a certain set of conditions, the initial rate of disappearance of hydroxide ion was determined to be 2.30 x 10-1 M/s. What is the initial rate of appearance of water under those same conditions? Significant figure: 2 QUESTION 3 Give the rate expression for the given reaction on number 2 Attach File Browse Local Files Browse Content Collection
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