and chlorine CO+ Cl₂→ COC1₂ s first order in CO and first order in C1₂. Complete the rate law for this reaction in the box below. Jse the form k[A]" [B]", where '1' is understood for m, n ... (don't enter 1) and concentrations taken to the zero power do not appear. Rate= n an experiment to determine the rate law, the rate of the reaction vas determined to be 5.10 × 10-29 M-s¹, when [CO] = 1.60 M and [Cl₂] = 0.198 M. From this experiment, the rate constant is M¹.s¹.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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The reaction for the formation of phosgene from carbon monoxide
and chlorine
CO + Cl₂ → COC12
is first order in CO and first order in Cl₂.
Complete the rate law for this reaction in the box below.
Use the form k[A] [B]", where '1' is understood for m, n ... (don't
enter 1) and concentrations taken to the zero power do not appear.
Rate =
In an experiment to determine the rate law, the rate of the reaction
was determined to be 5.10 × 10-29 M. s¹, when [CO] = 1.60 M
and [C1₂] =0.198 M. From this experiment, the rate constant is
M¹.s¹.
Transcribed Image Text:The reaction for the formation of phosgene from carbon monoxide and chlorine CO + Cl₂ → COC12 is first order in CO and first order in Cl₂. Complete the rate law for this reaction in the box below. Use the form k[A] [B]", where '1' is understood for m, n ... (don't enter 1) and concentrations taken to the zero power do not appear. Rate = In an experiment to determine the rate law, the rate of the reaction was determined to be 5.10 × 10-29 M. s¹, when [CO] = 1.60 M and [C1₂] =0.198 M. From this experiment, the rate constant is M¹.s¹.
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