Step 2-(CH3)3C + HOCI → (CH3)3COH + CI 1 24. At 700 °C, hydrogen gas reduces nitric oxide according to the equation 2H₂(g) + 2NO(g) → 2H₂O(g) + N₂(g) obeys the rate law, Rate = k [H₂][NO]2. What is the value of the rate constant, reaction is 0.183 M/h when the initial [H₂] = 0.220 M and which if the initial rate of the in M².h [NO] = 0.250 M. the initial a. 3.33 b. 0.075 Slow C. 0.003 d. 13.33 e. 15.15

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Chapter1: Chemical Foundations
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Question 24 please and thank you! It's an exam study guide so it's not for a grade.

e.
Step 3 -(CH3)3C+0² + H (CH3)3COH Fast
Step 1 -(CH3)3CCI + OH
(CH3)3C + HOCI Fast
Step 2 -(CH3)3C + HOCI → (CH3)3COH + Cl Slow
24. At 700 °C, hydrogen gas reduces nitric oxide according to the equation 2H2(g) + 2NO(g) → 2H₂O(g) + N₂(g) which
obeys the rate law, Rate = k [H₂][NO]2. What is the value of the rate constant, in if the initial rate of the
reaction is 0.183 M/h when the initial [H₂] = 0.220 M and the initial [NO] = 0.250 M.
d.
a. 3.33
b. 0.075
c. 0.003
25. Below is a proposed mechanism for the decomposition of H₂O₂.
H₂O₂+I→ H₂O + IO
H₂O2+ IO → H₂O + O₂ + I
Which of the following statements is incorrect?
slow
fast
13.33
1
M².h
e. 15.15
Transcribed Image Text:e. Step 3 -(CH3)3C+0² + H (CH3)3COH Fast Step 1 -(CH3)3CCI + OH (CH3)3C + HOCI Fast Step 2 -(CH3)3C + HOCI → (CH3)3COH + Cl Slow 24. At 700 °C, hydrogen gas reduces nitric oxide according to the equation 2H2(g) + 2NO(g) → 2H₂O(g) + N₂(g) which obeys the rate law, Rate = k [H₂][NO]2. What is the value of the rate constant, in if the initial rate of the reaction is 0.183 M/h when the initial [H₂] = 0.220 M and the initial [NO] = 0.250 M. d. a. 3.33 b. 0.075 c. 0.003 25. Below is a proposed mechanism for the decomposition of H₂O₂. H₂O₂+I→ H₂O + IO H₂O2+ IO → H₂O + O₂ + I Which of the following statements is incorrect? slow fast 13.33 1 M².h e. 15.15
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