Use the Standard Thermodynamic Properties table to calculate AH° for the following reaction: Fe2O3 (s) + 3 CO(9) → 2 Fe(s) + 3 CO2(g) kJ

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**Thermodynamics and Reaction Enthalpies**

Use the *Standard Thermodynamic Properties* table to calculate \( \Delta H^\circ \) for the following reaction:

\[ \text{Fe}_2\text{O}_3(s) + 3 \text{CO}(g) \rightarrow 2 \text{Fe}(s) + 3 \text{CO}_2(g) \]

\[ \square \, \text{kJ} \]

To calculate the enthalpy change (\( \Delta H^\circ \)) for the given reaction, you need to use the standard enthalpies of formation from a thermodynamic table.

**Steps to Calculate \( \Delta H^\circ \):**

1. Identify the standard enthalpy of formation (\( \Delta H_f^\circ \)) for each reactant and product from the thermodynamic table.

2. Use the formula:
   \[
   \Delta H^\circ = \sum \Delta H_f^\circ (\text{products}) - \sum \Delta H_f^\circ (\text{reactants})
   \]

3. Substitute the values from the table into the equation to find the overall enthalpy change for the reaction.
Transcribed Image Text:**Thermodynamics and Reaction Enthalpies** Use the *Standard Thermodynamic Properties* table to calculate \( \Delta H^\circ \) for the following reaction: \[ \text{Fe}_2\text{O}_3(s) + 3 \text{CO}(g) \rightarrow 2 \text{Fe}(s) + 3 \text{CO}_2(g) \] \[ \square \, \text{kJ} \] To calculate the enthalpy change (\( \Delta H^\circ \)) for the given reaction, you need to use the standard enthalpies of formation from a thermodynamic table. **Steps to Calculate \( \Delta H^\circ \):** 1. Identify the standard enthalpy of formation (\( \Delta H_f^\circ \)) for each reactant and product from the thermodynamic table. 2. Use the formula: \[ \Delta H^\circ = \sum \Delta H_f^\circ (\text{products}) - \sum \Delta H_f^\circ (\text{reactants}) \] 3. Substitute the values from the table into the equation to find the overall enthalpy change for the reaction.
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