14.4.3 Calculating the Rate Laws of Multi-step Reactions Flashcards

1
Q

Calculating the Rate Laws of Multi-step Reactions

A
  • If a proposed reaction mechanism is consistent with the experimentally-determined rate law, the proposed mechanism might be correct; if a proposed mechanism is not consistent with the experimentally-determined rate law, the proposed mechanism is incorrect.
  • If the first elementary step of the reaction mechanism is not the rate-determining step, the derived rate law will often include reaction intermediates.
  • The rate law must be written in terms of known concentrations.
  • If an elementary step is fast, the reverse of the elementary step will also be fast.
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2
Q

note

A
  • A reaction mechanism consists of a series of elementary steps. One of the elementary steps will be the rate-determining step.
  • Reaction mechanisms are hypothesized. If a proposed mechanism is consistent with the experimentally-determined rate law, the proposed mechanism might be correct; if a proposed mechanism is not consistent with the experimentally-determined rate law, the proposed mechanism is definitely incorrect.
  • If the first elementary step of a reaction mechanism is not the rate-determining step, the derived rate law will often include reaction intermediates.
  • For example, a proposed mechanism for the reaction between nitrogen monoxide (NO) and bromine (Br 2 ) has a proposed rate law rate = k 2 [NO][NOBr 2 ]. The NOBr 2 is a reaction intermediate.
  • However, since NOBr 2 is produced and consumed
    simultaneously throughout the course of the reaction, it is impossible to measure its concentration. The proposed rate law must be written in terms of known concentrations.
  • If an elementary step is fast, the reverse of the elementary step will also be fast. The rate of the forward reaction is the same as the rate of the reverse reaction.
  • This can be used to express the concentrations of reaction intermediates (such as NOBr 2 ) in terms of known concentrations.
  • For example, since the forward rate of the first elementary step in the proposed mechanism is the same as the reverse rate, k1[NO][Br 2 ] = k–1[NOBr 2 ]. This can be rearranged to express [NOBr 2 ] in terms of [NO] and [Br 2 ].
  • Plugging this formula for [NOBr 2 ] into the proposed rate law yields a new rate law in terms of known concentrations. The three rate constants (k 2 , k 1 , and k –1 ) merge into one rate constant, k obs or simply k. This new proposed rate law is the same as the observed rate law, so the proposed mechanism is consistent with reality, and might be correct.
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3
Q

In a proposed two-step mechanism for the reaction, CO(g) + NO2(g) → CO2(g) + NO(g), the second, fast, step is NO3 + CO → NO2 + CO2. What is the expected rate law of this reaction?

A

rate of reaction = k[ NO2 ]^2

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4
Q

In the reaction, 2NO(g) + O2(g) → 2NO2(g), the first step, 2NO(g) ↔ N2O2(g), is fast. Which is a true equation for this first step of the reaction mechanism?

A

k1 [ NO]^2 = k_−1 [ N2O2 ]

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5
Q

Which best describes a rate-determining step?

A

An elementary process that occurs slower than all others and specifies the speed of the overall reaction.

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6
Q

The rate law for the reaction, 2NO(g) + O2(g) → 2NO2(g), is found to be: rate of reaction = k [ NO]2 [O2 ]2.

The first, fast step is 2NO(g) ↔ N2O2(g).

What is the value of Δ[ N2O2 ] / Δt ?

A

0

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7
Q

What is the slow step of the reaction mechanism called?

A

The rate-determining step

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8
Q

What is referred to as dynamic equilibrium?

A

The rate of the forward reaction equals the rate of the reverse reaction.

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9
Q

Which best defines a reaction mechanism?

A

A description of a chemical reaction presented as a series of one-step changes.

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10
Q

Which best defines an elementary process?

A

Any molecular event that significantly alters a molecule’s energy.

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11
Q

Which is not an important characteristic of elementary processes?

A

One elementary process may occur much more quickly than all the others in the reaction mechanism, and in all cases, determine the rate of the overall reaction.

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12
Q

Which of the following statements is TRUE?

A

The slow step determines the rate of the overall reaction.

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