The compound cyclohexanol, C6H₁2O, is a good fuel. It is a liquid at ordinary temperatures. When the liquid is burned, the reaction involved is 2 C6H12O(l) + 17 O₂(g)—12 CO₂(g) + 12 H₂O(g) The standard enthalpy of formation of liquid cyclohexanol at 25 °C is -348.2 kJ mol-¹; other relevant enthalpy of formation values in kJ mol-¹ are: C6H12O(g) = -286.2; CO₂(g) = -393.5; H₂O(g) = -241.8 (a) Calculate the enthalpy change in the burning of 3.000 mol liquid cyclohexanol to form gaseous products at 25°C. State explicitly whether the reaction is endothermic or exothermic. AH° = kJ (b) Would more or less heat be evolved if gaseous cyclohexanol were burned under the same conditions? What is the standard enthalpy change for vaporizing 3.000 mol C6H₁2O() at 25°C? AH° = kj Previous Next

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The compound cyclohexanol, C6H₁2O, is a good fuel. It is a liquid at ordinary temperatures. When the liquid is burned, the reaction
involved is
2 C6H₁2O(l) + 17 O₂(g)—12 CO₂(g) + 12 H₂O(g)
The standard enthalpy of formation of liquid cyclohexanol at 25 °C is -348.2 kJ mol-¹; other relevant enthalpy of formation values in
kJ mol-¹ are:
C6H₁2O(g) = -286.2; CO₂(g) = -393.5; H₂O(g) = -241.8
(a) Calculate the enthalpy change in the burning of 3.000 mol liquid cyclohexanol to form gaseous products at 25°C. State
explicitly whether the reaction is endothermic or exothermic.
ΔΗ° =
kJ
(b) Would more or less heat be evolved if gaseous cyclohexanol were burned under the same conditions?
What is the standard enthalpy change for vaporizing 3.000 mol C6H₁2O() at 25°C?
AH° =
kJ
Previous
Next
Transcribed Image Text:The compound cyclohexanol, C6H₁2O, is a good fuel. It is a liquid at ordinary temperatures. When the liquid is burned, the reaction involved is 2 C6H₁2O(l) + 17 O₂(g)—12 CO₂(g) + 12 H₂O(g) The standard enthalpy of formation of liquid cyclohexanol at 25 °C is -348.2 kJ mol-¹; other relevant enthalpy of formation values in kJ mol-¹ are: C6H₁2O(g) = -286.2; CO₂(g) = -393.5; H₂O(g) = -241.8 (a) Calculate the enthalpy change in the burning of 3.000 mol liquid cyclohexanol to form gaseous products at 25°C. State explicitly whether the reaction is endothermic or exothermic. ΔΗ° = kJ (b) Would more or less heat be evolved if gaseous cyclohexanol were burned under the same conditions? What is the standard enthalpy change for vaporizing 3.000 mol C6H₁2O() at 25°C? AH° = kJ Previous Next
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