Below is a list of enthalpy changes for the Born-Haber cycle for the formation of solid LiF from Li(s) and F(g). Use these data to determine the lattice energy for the formation LiF(s). Li(s) → Li(g) ΔH1 = +162 kJ/mol Li(g) → Li+(g) + e- ΔH2 = +520.2 kJ/mol F2(g) → 2F(g) ΔH3 = 154 kJ/mol F(g) + e- → F-(g) ΔH4 = -328 kJ/mol Li(s) + 1/2F2(g) → LiF(s) ΔHf = -612 kJ/mol Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. a. 1371 kJ/mol b. -1371 kJ/mol c. 1043 kJ/mol d. -1043 kJ/mol

Chemistry by OpenStax (2015-05-04)
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Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
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Chapter7: Chemical Bonding And Molecular Geometry
Section: Chapter Questions
Problem 75E: Element First Ionization Energy (kJImol) Second Ionization Energy (kiImol) I K 419 3050 Ca 590 1140...
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1. Below is a list of enthalpy changes for the Born-Haber cycle for the formation of solid LiF from Li(s) and F(g). Use these data to determine the lattice energy for the formation LiF(s). 

Li(s) → Li(g)       ΔH1 = +162 kJ/mol 
Li(g) → Li+(g) + e-     ΔH = +520.2 kJ/mol
F2(g) → 2F(g)     ΔH = 154 kJ/mol 
F(g) + e-  →  F-(g)     ΔH4  = -328 kJ/mol
Li(s) +  1/2F2(g) → LiF(s)   ΔH= -612 kJ/mol
Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer.
a. 1371 kJ/mol
b. -1371 kJ/mol
c. 1043 kJ/mol
d. -1043 kJ/mol
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