Determine the enthalpy of reaction for HCI(g) + NaNO2(s) → HNO2(1) + NaCl(s) 2NACI(s) + H2O(1) → 2HCI(g) + Na20(s) AH° = -507.1 kJ/mol NO(g) + NO2(g) + Na20(s) → 2NANO2(s) AH° = -427.0 kJ/mol NO(g) + NO2(g) - 2HNO2(1) → N2O(g) + O2(g) + H20(1) AH° = +34.02 kJ/mol N20(g) + O2(g) AH° = -43.01 kJ/mol

World of Chemistry, 3rd edition
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Chapter10: Energy
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Determine the enthalpy of reaction for HCI(g) + NaNO2(s) → HNO2(1)
+ NaCI(s)
2HCI(g) + Na20(s) AH° = -507.1 kJ/mol
2NaNO2(s) AH° = -427.0 kJ/mol
2NaCl(s) + H2O(1)
NO(g) + NO2(g) + Na20(s)
NO(g) + NO2(g) → N20(g) + O2(g) AH° = -43.01 kJ/mol
2HNO2(1) → N20(g) + O2(g) + H2O(I) AH° = +34.02 kJ/mol
→
→
Transcribed Image Text:Determine the enthalpy of reaction for HCI(g) + NaNO2(s) → HNO2(1) + NaCI(s) 2HCI(g) + Na20(s) AH° = -507.1 kJ/mol 2NaNO2(s) AH° = -427.0 kJ/mol 2NaCl(s) + H2O(1) NO(g) + NO2(g) + Na20(s) NO(g) + NO2(g) → N20(g) + O2(g) AH° = -43.01 kJ/mol 2HNO2(1) → N20(g) + O2(g) + H2O(I) AH° = +34.02 kJ/mol → →
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