tion 18 of 18 Macmillan Learning Consider an ionic compound, MX3, composed of generic metal M and generic gaseous halogen X. • The enthalpy of formation of MX3 is AH; = -831 kJ/mol. • The enthalpy of sublimation of M is AH sub = 129 kJ/mol. • The first, second, and third ionization energies of M are IE₁ = 643 kJ/mol, IE2 = 1589 kJ/mol, and IE3 = 2491 kJ/mol. • The electron affinity of X is AHEA = -365 kJ/mol. (Refer to the hint). • The bond energy of X₂ is BE = 249 kJ/mol. Determine the lattice energy of MX3. 2,407 AH lattice = 18 tv kJ/mol

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tion 18 of 18
Macmillan Learning
Consider an ionic compound, MX3, composed of generic metal M and generic gaseous halogen X.
• The enthalpy of formation of MX3 is AH = -831 kJ/mol.
• The enthalpy of sublimation of M is AH sub = 129 kJ/mol.
• The first, second, and third ionization energies of M are IE₁ = 643 kJ/mol, IE2 = 1589 kJ/mol, and IE3 = 2491 kJ/mol.
• The electron affinity of X is AHEA = -365 kJ/mol. (Refer to the hint).
• The bond energy of X₂ is BE = 249 kJ/mol.
Determine the lattice energy of MX3.
2,467
AH lattice =
18
tv
kJ/mol
Transcribed Image Text:tion 18 of 18 Macmillan Learning Consider an ionic compound, MX3, composed of generic metal M and generic gaseous halogen X. • The enthalpy of formation of MX3 is AH = -831 kJ/mol. • The enthalpy of sublimation of M is AH sub = 129 kJ/mol. • The first, second, and third ionization energies of M are IE₁ = 643 kJ/mol, IE2 = 1589 kJ/mol, and IE3 = 2491 kJ/mol. • The electron affinity of X is AHEA = -365 kJ/mol. (Refer to the hint). • The bond energy of X₂ is BE = 249 kJ/mol. Determine the lattice energy of MX3. 2,467 AH lattice = 18 tv kJ/mol
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