The molar heats of formation of liquid and gas phase water are given by: kJ H₂ (9) + 02 (9) → H₂O(l) ΔΗ, = -285.8 mol H₂ (g) + O₂ (9) → H₂O (g) Use these equations and values of AHF to determine the amount of heat transferred in the process of evaporating 1 mole of liquid water under constant pressure. H₂O(l) → H₂O (9) AHƒ = ? AH = -241.8 kJ mol

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter5: Thermochemistry
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Problem 5.97QE: The enthalpy of combustion of liquid n-hexane, C6H14, is 4159.5 kJ/mol, and that of gaseous n-hexane...
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The molar heats of formation of liquid and gas phase water are given by:
H₂ (9) + O2 (g) → H₂O(l)
ΔΗ,
-285.8
kJ
mol
H₂ (9) + ¼/02 (9) → H₂O (9)
AH f
Use these equations and values of AHF to determine the amount of heat transferred in the
process of evaporating 1 mole of liquid water under constant pressure.
H₂O(l)→ H₂O(g)
AHƒ = ?
=
-
-241.8
kJ
mol
Transcribed Image Text:The molar heats of formation of liquid and gas phase water are given by: H₂ (9) + O2 (g) → H₂O(l) ΔΗ, -285.8 kJ mol H₂ (9) + ¼/02 (9) → H₂O (9) AH f Use these equations and values of AHF to determine the amount of heat transferred in the process of evaporating 1 mole of liquid water under constant pressure. H₂O(l)→ H₂O(g) AHƒ = ? = - -241.8 kJ mol
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