A chemical engineer is studying the rate of this reaction. 2N,0, (2) → 2N,0, (g) +0, (g) He fills a reaction vessel with N,O, and measures its concentration as the reaction proceeds. Here's a graph of his data: 0.8 0.2- 0.2 0.4 0.6 0.8 1.2 t (s) (w) ['o°n]

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Chapter13: Rates Of Reaction
Section: Chapter Questions
Problem 13.152QP: Nitrogen monoxide reacts with hydrogen as follows: 2NO(g)+H2(g)N2O(g)+H2O(g) The rate law is [H2]/t...
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Use this graph to answer the following questions:
What is the half life of the reaction?
'1/2
Round your answer to 2 significant digits.
Suppose the rate of the reaction is known to be first order in
N,Og. Calculate the value of the rate constant k.
k
Round your answer to 2 significant digits. Also be sure you
include the correct unit symbol.
Predict the concentration of N,O, in the engineer's reaction
vessel after 2.00 seconds have passed.
[N,0] = 0M
Assume no other reaction is important, and continue to
assume the rate is first order in N,Oz.
Round your answer to 2 significant digits.
||
Transcribed Image Text:Use this graph to answer the following questions: What is the half life of the reaction? '1/2 Round your answer to 2 significant digits. Suppose the rate of the reaction is known to be first order in N,Og. Calculate the value of the rate constant k. k Round your answer to 2 significant digits. Also be sure you include the correct unit symbol. Predict the concentration of N,O, in the engineer's reaction vessel after 2.00 seconds have passed. [N,0] = 0M Assume no other reaction is important, and continue to assume the rate is first order in N,Oz. Round your answer to 2 significant digits. ||
A chemical engineer is studying the rate of this reaction.
2N,0, (g) → 2N,0, (g) +O, (g)
He fills a reaction vessel with N,O, and measures its concentration as the reaction proceeds. Here's a graph of his data:
1.
0.8
0.4-
0.2-
0.4
0.6
0.8
t (s)
(x) [*o°n]
Transcribed Image Text:A chemical engineer is studying the rate of this reaction. 2N,0, (g) → 2N,0, (g) +O, (g) He fills a reaction vessel with N,O, and measures its concentration as the reaction proceeds. Here's a graph of his data: 1. 0.8 0.4- 0.2- 0.4 0.6 0.8 t (s) (x) [*o°n]
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