Suppose the reaction between nitric oxide and oxygen proceeds by the following mechanism: step elementary reaction rate constant 1 NO(g) + O2(9) – NO2(g) + O(g) 2 NO(g) + O(g) –→ NO2(g) Suppose also k, «k,. That is, the first step is much slower than the second. Write the balanced chemical equation for the overall chemical reaction: Write the experimentally- observable rate law for the overall chemical reaction. rate = k|| Note: your answer should not contain the concentrations of any intermediates. Express the rate constant k for the overall chemical reaction in terms of k1, k2, and (if necessary) the rate constants k.1 and k-2 for k = the reverse of the two elementary reactions in the mechanism.

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Chapter1: Chemical Foundations
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Suppose the reaction between nitric oxide and oxygen proceeds by the following mechanism:
step
elementary reaction
rate constant
1
NO(g) + O,(g) –→ NO2(g) + O(g)
k1
NO(g) + O(g) → NO2(g)
Suppose also k,«k,. That is, the first step is much slower than the second.
Write the balanced
chemical equation for the
overall chemical reaction:
Write the experimentally-
observable rate law for the
overall chemical reaction.
rate
= k ||
Note: your answer should
not contain the
concentrations of any
intermediates.
Express the rate constant
k for the overall chemical
reaction in terms of k1, k2,
and (if necessary) the rate
constants k.1 and k-2 for
k = |
%3D
the reverse of the two
elementary reactions in
the mechanism.
Transcribed Image Text:Suppose the reaction between nitric oxide and oxygen proceeds by the following mechanism: step elementary reaction rate constant 1 NO(g) + O,(g) –→ NO2(g) + O(g) k1 NO(g) + O(g) → NO2(g) Suppose also k,«k,. That is, the first step is much slower than the second. Write the balanced chemical equation for the overall chemical reaction: Write the experimentally- observable rate law for the overall chemical reaction. rate = k || Note: your answer should not contain the concentrations of any intermediates. Express the rate constant k for the overall chemical reaction in terms of k1, k2, and (if necessary) the rate constants k.1 and k-2 for k = | %3D the reverse of the two elementary reactions in the mechanism.
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