A chemist wants to measure the rate of the following reaction: 2CIO2 (ag) + 20H" (ag) ----> CIO3 (ag) + CIO2 (aq) + H2O (I) a. Will the concentration of OHincrease, decrease, or stay the same as time goes on? b. Will the rate of the reaction increase, decrease, or stay the same as time goes on? The chemist mentioned in the problem measures the rate of the same reaction, but this time she uses a higher concentration of CIO2 but the same concentration of OH- . She notices a change in the reaction rate. Is the reaction faster or slower this time? The chemist mentioned in the problem measures the rate of the same reaction with the same concentration of reactants, but this time she does so at a lower temperature. Is the reaction faster or slower this time?

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Chapter1: Chemical Foundations
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A chemist wants to measure the rate of the
following reaction:
2CIO2 (ag) + 20H¯ (aq)
(aq) + H2O (I)
----> CIOЗ" (ag) + CIO2
a. Will the concentration of OHincrease,
decrease, or stay the same as time goes on?
b. Will the rate of the reaction increase,
decrease, or stay the same as time goes on?
The chemist mentioned in the problem
measures the rate of the same reaction, but this
time she uses a higher concentration of CIO2
but the same concentration of OH- . She notices
a change in the reaction rate. Is the reaction
faster or slower this time?
The chemist mentioned in the problem
measures the rate of the same reaction with the
same concentration of reactants, but this time
she does so at a lower temperature. Is the
reaction faster or slower this time?
Transcribed Image Text:A chemist wants to measure the rate of the following reaction: 2CIO2 (ag) + 20H¯ (aq) (aq) + H2O (I) ----> CIOЗ" (ag) + CIO2 a. Will the concentration of OHincrease, decrease, or stay the same as time goes on? b. Will the rate of the reaction increase, decrease, or stay the same as time goes on? The chemist mentioned in the problem measures the rate of the same reaction, but this time she uses a higher concentration of CIO2 but the same concentration of OH- . She notices a change in the reaction rate. Is the reaction faster or slower this time? The chemist mentioned in the problem measures the rate of the same reaction with the same concentration of reactants, but this time she does so at a lower temperature. Is the reaction faster or slower this time?
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