C. The initial rates in the table below, were experimentally determined for the reaction: 2NO (g) + C2(g)→ 2NOCI(g) Experiment Initial [NO] / M Initial [Ch] / M Intial rate of decomposition of Cl2 / M s 1.0 x 102 1 0.13 0.20 2 0.26 0.20 4.0 x 10-2 0.13 0.10 5.0 x 103 Determine the rate law for the reaction, by showing all calculation steps or by explaining your reasoning. i. i1. Determine the overall order of the reaction. i11. Determine the value of the rate constant, k, with its units. iv. Calculate the initial rate when both reactants have a concentration of 0.05M.

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C. The initial rates in the table below, were experimentally determined for the reaction:
2NO (g) + Cl(g) → 2NOCI(g)
Experiment
Initial [NO] / M
Initial [C2] / M
Intial rate of
decomposition of
C2 / M s
1.0 x 10-2
0.13
0.20
0.26
0.20
4.0 x 10-2
3
0.13
0.10
5.0 x 103
Determine the rate law for the reaction, by showing all calculation steps or by explaining
your reasoning.
i.
ii. Determine the overall order of the reaction.
111. Determine the value of the rate constant, k, with its units.
iv. Calculate the initial rate when both reactants have a concentration of 0.05M.
Transcribed Image Text:C. The initial rates in the table below, were experimentally determined for the reaction: 2NO (g) + Cl(g) → 2NOCI(g) Experiment Initial [NO] / M Initial [C2] / M Intial rate of decomposition of C2 / M s 1.0 x 10-2 0.13 0.20 0.26 0.20 4.0 x 10-2 3 0.13 0.10 5.0 x 103 Determine the rate law for the reaction, by showing all calculation steps or by explaining your reasoning. i. ii. Determine the overall order of the reaction. 111. Determine the value of the rate constant, k, with its units. iv. Calculate the initial rate when both reactants have a concentration of 0.05M.
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