The reduction of nitric oxide with hydrogen 2NO+2H₂ → N₂ + 2H₂O is second order in NO and first order in H₂. Complete the rate law for this reaction in the box below. Use the form k[A] [B]", where '1' is understood for m, n ... (don't enter 1) and concentrations taken to the zero power do not appear. Rate = In an experiment to determine the rate law, the rate of the reaction was determined to be 7.99 x 107 M-s¹, when [NO] = 0.192 M and [H₂] = 0.129 M. From this experiment, the rate M².s¹. S constant is

Chemistry for Engineering Students
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Chapter11: Chemical Kinetics
Section: Chapter Questions
Problem 11.48PAE: 11.48 The following data were collected for the decomposition of NT),-: Time, f (min) [N2Os] (mol...
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The reduction of nitric oxide with hydrogen
2NO+2H₂ → N₂ + 2H₂O
is second order in NO and first order in H₂.
Complete the rate law for this reaction in the box below.
Use the form k[A] [B]", where '1' is understood for m, n ... (don't enter 1) and concentrations taken
to the zero power do not appear.
Rate =
In an experiment to determine the rate law, the rate of the reaction was determined to be
7.99 x 10-³ M-s¹, when [NO] =
S
= 0.192 M and [H₂] = 0.129 M. From this experiment, the rate
M².s¹.
constant is
Transcribed Image Text:The reduction of nitric oxide with hydrogen 2NO+2H₂ → N₂ + 2H₂O is second order in NO and first order in H₂. Complete the rate law for this reaction in the box below. Use the form k[A] [B]", where '1' is understood for m, n ... (don't enter 1) and concentrations taken to the zero power do not appear. Rate = In an experiment to determine the rate law, the rate of the reaction was determined to be 7.99 x 10-³ M-s¹, when [NO] = S = 0.192 M and [H₂] = 0.129 M. From this experiment, the rate M².s¹. constant is
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