The rate of a certain reaction is given by the following rate law: te=k[N₂]³[0₂] Use this information to answer the questions below. What is the reaction order in N₂? What is the reaction order in 03? What is overall reaction order? At a certain concentration of N₂ and O3, the initial rate of reaction is 8.0 x 103 M/s. What would the initial rate of the reaction be if the concentration of N₂ were doubled? Round your answer to 2 significant digits. The rate of the reaction is measured to be 39.0 M/s when [N₂] = 0.25 M and [03] = 0.61 M. Calculate the value of the rate constant. Round your answer to 2 significant digits. k = 3 M 1 4 M 0-/-/- -3 -1 • S

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The rate of a certain reaction is given by the following rate law:
rate=k[N₂]³[03]
Use this information to answer the questions below.
What is the reaction order in N₂?
What is the reaction order in 03?
What is overall reaction order?
At a certain concentration of N₂ and O3, the initial rate of
reaction is 8.0 x 103 M/s. What would the initial rate of the
reaction be if the concentration of N₂ were doubled? Round
your answer to 2 significant digits.
The rate of the reaction is measured to be 39.0 M/s when
= 0.25 M and [03]
[N₂]
= 0.61 M. Calculate the value of the
rate constant. Round your answer to 2 significant digits.
= [ м
k =
-3
3
1
4
M
-1
• S
Transcribed Image Text:The rate of a certain reaction is given by the following rate law: rate=k[N₂]³[03] Use this information to answer the questions below. What is the reaction order in N₂? What is the reaction order in 03? What is overall reaction order? At a certain concentration of N₂ and O3, the initial rate of reaction is 8.0 x 103 M/s. What would the initial rate of the reaction be if the concentration of N₂ were doubled? Round your answer to 2 significant digits. The rate of the reaction is measured to be 39.0 M/s when = 0.25 M and [03] [N₂] = 0.61 M. Calculate the value of the rate constant. Round your answer to 2 significant digits. = [ м k = -3 3 1 4 M -1 • S
Expert Solution
Step 1

Given data is 

Rate of the reaction = k [N2]3[O3]1 

At a certain concentrations,

The initial rate of reaction is 8 x 103 M / s

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