onsider these reactions, where M represents a generic metal. 2 M(s) + 6HCl(aq) → 2 MC1₂ (aq) + 3H₂(g) 1. 2. HCl(g) HCl(aq) 3. 4. H₂(g) + Cl₂(g) →→→ 2 HCl(g) - AH₁ = -669.0 kJ AH₂ = -74.8 kJ AH3-1845.0 kJ AH4 = -210.0 kJ MCI, (s) MCI, (aq) → → Use the given information to determine the enthalpy of the reaction 2 M(s) + 3 Cl₂(g) → 2 MCI, (s)

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Consider these reactions, where M represents a generic metal.

1. \(2 \, \text{M}(s) + 6 \, \text{HCl}(aq) \rightarrow 2 \, \text{MCl}_3(aq) + 3 \, \text{H}_2(g)\) \hspace{3mm} \(\Delta H_1 = -669.0 \, \text{kJ}\)

2. \(\text{HCl}(g) \rightarrow \text{HCl}(aq)\) \hspace{3mm} \(\Delta H_2 = -74.8 \, \text{kJ}\)

3. \(\text{H}_2(g) + \text{Cl}_2(g) \rightarrow 2 \, \text{HCl}(g)\) \hspace{3mm} \(\Delta H_3 = -1845.0 \, \text{kJ}\)

4. \(\text{MCl}_3(s) \rightarrow \text{MCl}_3(aq)\) \hspace{3mm} \(\Delta H_4 = -210.0 \, \text{kJ}\)

Use the given information to determine the enthalpy of the reaction:

\[2 \, \text{M}(s) + 3 \, \text{Cl}_2(g) \rightarrow 2 \, \text{MCl}_3(s)\]

\[\Delta H = \, \rule{4cm}{0.15mm} \, \text{kJ}\]
Transcribed Image Text:Consider these reactions, where M represents a generic metal. 1. \(2 \, \text{M}(s) + 6 \, \text{HCl}(aq) \rightarrow 2 \, \text{MCl}_3(aq) + 3 \, \text{H}_2(g)\) \hspace{3mm} \(\Delta H_1 = -669.0 \, \text{kJ}\) 2. \(\text{HCl}(g) \rightarrow \text{HCl}(aq)\) \hspace{3mm} \(\Delta H_2 = -74.8 \, \text{kJ}\) 3. \(\text{H}_2(g) + \text{Cl}_2(g) \rightarrow 2 \, \text{HCl}(g)\) \hspace{3mm} \(\Delta H_3 = -1845.0 \, \text{kJ}\) 4. \(\text{MCl}_3(s) \rightarrow \text{MCl}_3(aq)\) \hspace{3mm} \(\Delta H_4 = -210.0 \, \text{kJ}\) Use the given information to determine the enthalpy of the reaction: \[2 \, \text{M}(s) + 3 \, \text{Cl}_2(g) \rightarrow 2 \, \text{MCl}_3(s)\] \[\Delta H = \, \rule{4cm}{0.15mm} \, \text{kJ}\]
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