QUESTION IMAGE
Question
using the given information, calculate the standard enthalpy of reaction (in kj) for the following reaction.
cuo(s) + h₂(g) → cu(s) + h₂o(l)
report your answer to 1 place past the decimal point. if your answer is negative, include the negative sign. if it is positive, do not include the sign.
Step1: Recall the formula for standard enthalpy of reaction
The formula for the standard enthalpy of reaction ($\Delta H_{rxn}^{\circ}$) is $\Delta H_{rxn}^{\circ}=\sum n\Delta H_{f}^{\circ}(\text{products})-\sum m\Delta H_{f}^{\circ}(\text{reactants})$, where $n$ and $m$ are the stoichiometric coefficients of products and reactants respectively.
Step2: Identify reactants and products with their $\Delta H_{f}^{\circ}$
For the reaction $\text{CuO}(s)+\text{H}_2(g)
ightarrow\text{Cu}(s)+\text{H}_2\text{O}(l)$:
- Reactants: $\text{CuO}(s)$ with $\Delta H_{f}^{\circ}=- 156.1\space kJ/mol$ and $\text{H}_2(g)$ with $\Delta H_{f}^{\circ}=0\space kJ/mol$ (stoichiometric coefficient for both is 1).
- Products: $\text{Cu}(s)$ with $\Delta H_{f}^{\circ}=0\space kJ/mol$ and $\text{H}_2\text{O}(l)$ with $\Delta H_{f}^{\circ}=-285.8\space kJ/mol$ (stoichiometric coefficient for both is 1).
Step3: Calculate $\sum n\Delta H_{f}^{\circ}(\text{products})$
$\sum n\Delta H_{f}^{\circ}(\text{products})=(1\times\Delta H_{f}^{\circ}(\text{Cu}(s)))+(1\times\Delta H_{f}^{\circ}(\text{H}_2\text{O}(l)))=0+(-285.8)= - 285.8\space kJ/mol$
Step4: Calculate $\sum m\Delta H_{f}^{\circ}(\text{reactants})$
$\sum m\Delta H_{f}^{\circ}(\text{reactants})=(1\times\Delta H_{f}^{\circ}(\text{CuO}(s)))+(1\times\Delta H_{f}^{\circ}(\text{H}_2(g)))=-156.1 + 0=-156.1\space kJ/mol$
Step5: Calculate $\Delta H_{rxn}^{\circ}$
$\Delta H_{rxn}^{\circ}=\sum n\Delta H_{f}^{\circ}(\text{products})-\sum m\Delta H_{f}^{\circ}(\text{reactants})=(-285.8)-(-156.1)=-285.8 + 156.1=-129.7\space kJ/mol$
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-129.7