The decomposition of N, O, can be described by the equation 2N,0,(soln) 4 NO, (soln) + 0,(g) Consider the data in the table for the reaction at 45 °C in carbon tetrachloride solution. t(s) [N,0,1 (M) 2.194 175 1.965 506 1.596 795 1.331 Given the data, calculate the average rate of reaction for each successive time interval.

Chemical Principles in the Laboratory
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ISBN:9781305264434
Author:Emil Slowinski, Wayne C. Wolsey, Robert Rossi
Publisher:Emil Slowinski, Wayne C. Wolsey, Robert Rossi
Chapter21: Rates Of Chemical Reactions, Ii. A Clock Reaction
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tion 1 of 19
The decomposition of N, O, can be described by the equation
2 N,0, (soln) 4 NO, (soln) + O,(g)
Consider the data in the table for the reaction at 45 °C in carbon tetrachloride solution.
t(s)
[N,O;] (M)
2.194
175
1.965
506
1.596
795
1.331
Given the data, calculate the average rate of reaction for each successive time interval.
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Transcribed Image Text:tion 1 of 19 The decomposition of N, O, can be described by the equation 2 N,0, (soln) 4 NO, (soln) + O,(g) Consider the data in the table for the reaction at 45 °C in carbon tetrachloride solution. t(s) [N,O;] (M) 2.194 175 1.965 506 1.596 795 1.331 Given the data, calculate the average rate of reaction for each successive time interval. Question Source: MRG - General Chemistry | Pub | privacy policy |help about us terms of use contact us careers N W prime video
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