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Write the rate law for the following elementary reaction:N2O(g) → N2(g) + O(g)Use k1 to stand for the rate constant.

Question

Write the rate law for the following elementary reaction:

N2O(g) → N2(g) + O(g)
Use k1 to stand for the rate constant.

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Solution

Rate Law for the Elementary Reaction

  1. Identify the Reaction
    The given elementary reaction is: N2O(g)N2(g)+O(g) \text{N}_2\text{O}(g) \rightarrow \text{N}_2(g) + \text{O}(g)

  2. Determine the Rate Law
    For an elementary reaction, the rate law can be directly derived from the stoichiometry of the reactants. In this case, N₂O is decomposing into N₂ and O.

  3. Write the Rate Law Expression
    The rate law for the elementary reaction can be expressed as: Rate=k1[N2O] \text{Rate} = k_1 [\text{N}_2\text{O}] where:

    • k1 k_1 is the rate constant,
    • [N2O][\text{N}_2\text{O}] is the concentration of dinitrogen monoxide.
  4. Final Answer
    Hence, the rate law for the given reaction is: Rate=k1[N2O] \text{Rate} = k_1 [\text{N}_2\text{O}]

This problem has been solved

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