Enter your answer in the provided box. The rate constant for the second-order reaction: 2NOBI(g) 2NO(g) + Br2(g) is 0.80/(M s) at 10°C. Starting with a concentration of 0.86 M, calculate the concentration of NOBI after 95 s.
Enter your answer in the provided box. The rate constant for the second-order reaction: 2NOBI(g) 2NO(g) + Br2(g) is 0.80/(M s) at 10°C. Starting with a concentration of 0.86 M, calculate the concentration of NOBI after 95 s.
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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
Transcribed Image Text:Enter your answer in the provided box.
The rate constant for the second-order reaction:
2NOB1(g)
2NO(g) + Br2(g)
is 0.80/(M s) at 10°C. Starting with a concentration of 0.86 M, calculate the concentration of NOBI
after 95 s.
Expert Solution

Step 1
The given second-order reaction is :
Rate constant = 0.80/(M.s)
Initial concentration = 0.86 M
We have to calculate the concentration of NOBr after 95 seconds.
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Solved in 3 steps
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