Ethanol can be made by the reaction of ethylene and water: H₂C=CH₂(g)+ H₂O(g) → CH₂CH₂OH(g) Use bond dissociation enthalpies to estimate the enthalpy change in this reaction. AH (kJ/mol) Bond H-O C=C H-C C-C C-0 Enthalpy change Substance CH3CH₂OH(g) b calculate the enthalpy change for this reaction from enthalpies of formation. A,H (kJ/mol) -235.3 H₂O(g) H₂C=CH₂(g) 463 610 413 346 358 Enthalpy change KJ -241.83 52.47 kJ

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Ethanol can be made by the reaction of ethylene and water:
H₂C=CH₂(g) + H₂O(g) → CH3CH₂OH(g)
Use bond dissociation enthalpies to estimate the enthalpy change in this reaction.
ΔΗ (kJ/mol)
463
610
413
346
358
Bond
H-O
C=C
H-C
C-C
C-0
Enthalpy change
b Calculate the enthalpy change for this reaction from enthalpies of formation.
Substance A,H (kJ/mol)
CH3CH₂OH(g)
-235.3
H₂O(g)
H₂C=CH₂(g)
KJ
Enthalpy change
-241.83
52.47
kJ
Transcribed Image Text:Ethanol can be made by the reaction of ethylene and water: H₂C=CH₂(g) + H₂O(g) → CH3CH₂OH(g) Use bond dissociation enthalpies to estimate the enthalpy change in this reaction. ΔΗ (kJ/mol) 463 610 413 346 358 Bond H-O C=C H-C C-C C-0 Enthalpy change b Calculate the enthalpy change for this reaction from enthalpies of formation. Substance A,H (kJ/mol) CH3CH₂OH(g) -235.3 H₂O(g) H₂C=CH₂(g) KJ Enthalpy change -241.83 52.47 kJ
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