From the following data, calculate the enthalpy change for the combustion of cyclopropane at 298 K. The enthalpy of formation of CO₂ (g), H₂O(l) and propene (g) are -393.5, -285.8 and 20.42 kJ mol¹ respectively. The enthalpy of isomerisation of cyclopropane to propene is -33.0 kJ mol-¹.
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From the following data, calculate the enthalpy change for the combustion of cyclopropane at 298 K. The enthalpy of formation of CO₂ (g), H₂O(l) and propene (g) are -393.5, -285.8 and 20.42 kJ mol¹ respectively. The enthalpy of isomerisation of cyclopropane to propene is -33.0 kJ mol-¹. From the following data, calculate the enthalpy change for the combustion of cyclopropane at 298 K. The enthalpy of formation of CO₂ (g), H₂O(l) and propene (g) are -393.5, -285.8 and 20.42 kJ mol¹ respectively. The enthalpy of isomerisation of cyclopropane to propene is -33.0 kJ mol-¹. From the following data, calculate the enthalpy change for the combustion of cyclopropane at 298 K. The enthalpy of formation of CO₂ (g), H₂O(l) and propene (g) are -393.5, -285.8 and 20.42 kJ mol¹ respectively. The enthalpy of isomerisation of cyclopropane to propene is -33.0 kJ mol-¹. From the following data, calculate the enthalpy change for the combustion of cyclopropane at 298 K. The enthalpy of formation of CO₂ (g), H₂O(l) and propene (g) are -393.5, -285.8 and 20.42 kJ mol¹ respectively. The enthalpy of isomerisation of cyclopropane to propene is -33.0 kJ mol-¹. From the following data, calculate the enthalpy change for the combustion of cyclopropane at 298 K. The enthalpy of formation of CO₂ (g), H₂O(l) and propene (g) are -393.5, -285.8 and 20.42 kJ mol¹ respectively. The enthalpy of isomerisation of cyclopropane to propene is -33.0 kJ mol-¹.