Using the equations 2 CHe (1) + 15 O2 (g) → 12 CO2 (g) + 6 H20 (g)AH° = -6271 kJ/mol 2 H2 (g) + O2 (g) → 2 H,O (g) AH° = -483.6 kJ/mol C (s) + O2 (g) → CO2 (g) AH° = -393.5 kJ/mol Determine the enthalpy for the reaction 6 C (s) + 3 H2 (g) → CHe (1).

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**Question 22 of 35**  

Using the equations:  

1. \(2 \, \text{C}_6\text{H}_6 (l) + 15 \, \text{O}_2 (g) \rightarrow 12 \, \text{CO}_2 (g) + 6 \, \text{H}_2\text{O} (g) \quad \Delta H^\circ = -6271 \, \text{kJ/mol}\)  

2. \(2 \, \text{H}_2 (g) + \text{O}_2 (g) \rightarrow 2 \, \text{H}_2\text{O} (g) \quad \Delta H^\circ = -483.6 \, \text{kJ/mol}\)  

3. \(\text{C} (s) + \text{O}_2 (g) \rightarrow \text{CO}_2 (g) \quad \Delta H^\circ = -393.5 \, \text{kJ/mol}\)  

Determine the enthalpy for the reaction:  
\[6 \, \text{C} (s) + 3 \, \text{H}_2 (g) \rightarrow \text{C}_6\text{H}_6 (l)\]  

**[Input Area]**  
- A keypad is provided, allowing numerical input in kJ/mol for the calculated enthalpy change.
Transcribed Image Text:**Question 22 of 35** Using the equations: 1. \(2 \, \text{C}_6\text{H}_6 (l) + 15 \, \text{O}_2 (g) \rightarrow 12 \, \text{CO}_2 (g) + 6 \, \text{H}_2\text{O} (g) \quad \Delta H^\circ = -6271 \, \text{kJ/mol}\) 2. \(2 \, \text{H}_2 (g) + \text{O}_2 (g) \rightarrow 2 \, \text{H}_2\text{O} (g) \quad \Delta H^\circ = -483.6 \, \text{kJ/mol}\) 3. \(\text{C} (s) + \text{O}_2 (g) \rightarrow \text{CO}_2 (g) \quad \Delta H^\circ = -393.5 \, \text{kJ/mol}\) Determine the enthalpy for the reaction: \[6 \, \text{C} (s) + 3 \, \text{H}_2 (g) \rightarrow \text{C}_6\text{H}_6 (l)\] **[Input Area]** - A keypad is provided, allowing numerical input in kJ/mol for the calculated enthalpy change.
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