Plotting Reaction Progression: In each case make reasonable, relative, plots of every rea every product in relation to each other as a function of time. Balance first and think about the effect of a limiting reagent 14. NO, + Cl → NO;Cl [NO:], = [Cl:], = 0.6 M

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This is for question #14. 

**Plotting Reaction Progression:**

In each case, make reasonable, relative plots of every reactant and every product in relation to each other as a function of time. **Balance first** and think about the effect of a limiting reagent.

**14. Reaction:**

\[ \text{NO}_2 + \text{Cl}_2 \rightarrow \text{NO}_2\text{Cl} \]

- Initial Concentrations:
  - \([\text{NO}_2]_0 = 0.6 \, \text{M}\)
  - \([\text{Cl}_2]_0 = 0.6 \, \text{M}\)

**15. Reaction:**

\[ \text{NO}_2 + \text{F}_2 \rightarrow \text{NO}_2\text{F} \]

- Initial Concentrations:
  - \([\text{NO}_2]_0 = 2.5 \, \text{M}\)
  - \([\text{F}_2]_0 = 0.3 \, \text{M}\)
Transcribed Image Text:**Plotting Reaction Progression:** In each case, make reasonable, relative plots of every reactant and every product in relation to each other as a function of time. **Balance first** and think about the effect of a limiting reagent. **14. Reaction:** \[ \text{NO}_2 + \text{Cl}_2 \rightarrow \text{NO}_2\text{Cl} \] - Initial Concentrations: - \([\text{NO}_2]_0 = 0.6 \, \text{M}\) - \([\text{Cl}_2]_0 = 0.6 \, \text{M}\) **15. Reaction:** \[ \text{NO}_2 + \text{F}_2 \rightarrow \text{NO}_2\text{F} \] - Initial Concentrations: - \([\text{NO}_2]_0 = 2.5 \, \text{M}\) - \([\text{F}_2]_0 = 0.3 \, \text{M}\)
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