# Problem: The metathesis reaction between AgNO3 (aq) and NaCl(aq) proceeds as follows: AgNO3(aq) + NaCl(aq) → NaNO3(aq) + AgCl(s)Use the ΔH˚ of the net ionic equation and overall molecular equation along with data in Appendix C in the textbook to determine the value of ΔH˚f for AgNO3(aq){ m{AgNO}}_3 (aq).

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Balanced Reaction: AgNO3(aq) + NaCl(aq) → NaNO3(aq) + AgCl(s)

$\overline{){\mathbf{∆}}{{\mathbf{H}}}_{{\mathbf{rxn}}}{\mathbf{=}}{\mathbf{∆}}{{\mathbf{H}}}_{\mathbf{f}\mathbf{,}\mathbf{products}}{\mathbf{-}}{\mathbf{∆}}{{\mathbf{H}}}_{\mathbf{f}\mathbf{,}\mathbf{reactants}}}$

95% (151 ratings) ###### Problem Details

The metathesis reaction between AgNO3 (aq) and NaCl(aq) proceeds as follows: AgNO3(aq) + NaCl(aq) → NaNO3(aq) + AgCl(s)

Use the ΔH˚ of the net ionic equation and overall molecular equation along with data in Appendix C in the textbook to determine the value of ΔH˚f for AgNO3(aq).

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What scientific concept do you need to know in order to solve this problem?

Our tutors have indicated that to solve this problem you will need to apply the Enthalpy of Formation concept. You can view video lessons to learn Enthalpy of Formation. Or if you need more Enthalpy of Formation practice, you can also practice Enthalpy of Formation practice problems.

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Based on our data, we think this problem is relevant for Professor Campbell's class at Tufts University.