Give the relative rates of disappearance of reactants and formation of products for each of the following reactions. 2 03 (g) → 3 O2 (g) o-j(41) - (481) Δ[03] 1 3 Δt 2 a. b. 2 Δ[03] 1 Δι 3 = 1 Δ[02] (401) - (40¹) = 3 2 Δ[03] Δ[02] ΔΕ Δt Δ[ΝΟ] Δt NO(g) + O3(g) NO2(g) + O2(g) Δ[ΝΟ] Δt Δ[ΝΟ] Δt Δ[ΝΟ] At Δ[02] Δt Δ[02] Δ[ΝΟ2] Δ[03] Δt Δt Δt Δ[03] Δ[ΝΟ,] Δι ΔΕ Δ[03] At Δ[03] Δt Δ[02] Δt Δ[ΝΟ,] Δt Δ[ΝΟ2] Δt Δ[02] ΔΕ Δ[02] ΔΕ

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### Relative Rates of Reaction

Give the relative rates of disappearance of reactants and formation of products for each of the following reactions.

#### a. Reaction: \( 2 \, \text{O}_3(g) \rightarrow 3 \, \text{O}_2(g) \)

1. **Correct Answer:**
   \[
   -\frac{1}{3} \left( \frac{\Delta[\text{O}_3]}{\Delta t} \right) = \frac{1}{2} \left( \frac{\Delta[\text{O}_2]}{\Delta t} \right)
   \]

2. 
   \[
   -\frac{1}{2} \left( \frac{\Delta[\text{O}_3]}{\Delta t} \right) = \frac{1}{3} \left( \frac{\Delta[\text{O}_2]}{\Delta t} \right)
   \]

3. 
   \[
   \frac{1}{2} \left( \frac{\Delta[\text{O}_3]}{\Delta t} \right) = \frac{1}{3} \left( \frac{\Delta[\text{O}_2]}{\Delta t} \right)
   \]

4. 
   \[
   \frac{\Delta[\text{O}_3]}{\Delta t} = \frac{\Delta[\text{O}_2]}{\Delta t}
   \]

#### b. Reaction: \( \text{NO}(g) + \text{O}_3(g) \rightarrow \text{NO}_2(g) + \text{O}_2(g) \)

1. 
   \[
   -\frac{\Delta[\text{NO}]}{\Delta t} = -\frac{\Delta[\text{O}_2]}{\Delta t} = \frac{\Delta[\text{NO}_2]}{\Delta t} = \frac{\Delta[\text{O}_3]}{\Delta t}
   \]

2. 
   \[
   \frac{\Delta[\text{NO}]}{\Delta t} = \frac{\Delta[\text{O}_3]}{\Delta t} = \frac{\Delta[\text{NO}_2]}{\Delta t} = \frac{\Delta[\text{O}_2]}{\Delta t}
   \]

3. **
Transcribed Image Text:### Relative Rates of Reaction Give the relative rates of disappearance of reactants and formation of products for each of the following reactions. #### a. Reaction: \( 2 \, \text{O}_3(g) \rightarrow 3 \, \text{O}_2(g) \) 1. **Correct Answer:** \[ -\frac{1}{3} \left( \frac{\Delta[\text{O}_3]}{\Delta t} \right) = \frac{1}{2} \left( \frac{\Delta[\text{O}_2]}{\Delta t} \right) \] 2. \[ -\frac{1}{2} \left( \frac{\Delta[\text{O}_3]}{\Delta t} \right) = \frac{1}{3} \left( \frac{\Delta[\text{O}_2]}{\Delta t} \right) \] 3. \[ \frac{1}{2} \left( \frac{\Delta[\text{O}_3]}{\Delta t} \right) = \frac{1}{3} \left( \frac{\Delta[\text{O}_2]}{\Delta t} \right) \] 4. \[ \frac{\Delta[\text{O}_3]}{\Delta t} = \frac{\Delta[\text{O}_2]}{\Delta t} \] #### b. Reaction: \( \text{NO}(g) + \text{O}_3(g) \rightarrow \text{NO}_2(g) + \text{O}_2(g) \) 1. \[ -\frac{\Delta[\text{NO}]}{\Delta t} = -\frac{\Delta[\text{O}_2]}{\Delta t} = \frac{\Delta[\text{NO}_2]}{\Delta t} = \frac{\Delta[\text{O}_3]}{\Delta t} \] 2. \[ \frac{\Delta[\text{NO}]}{\Delta t} = \frac{\Delta[\text{O}_3]}{\Delta t} = \frac{\Delta[\text{NO}_2]}{\Delta t} = \frac{\Delta[\text{O}_2]}{\Delta t} \] 3. **
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