Lis) + % F21g) → LiFs) -594.1 kJ/mol (réaction globale) l'énergie de cohésion du réseau ionique ??? kJ/mol Lig > Lio) +155.2 kJ/mol ½ F2ig) Fo) +75.3 kJ/mol Fø +e- -> Fg) -328 kJ/mol Lia) > Li" (a) +e- +520 kJ/mol

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
Section: Chapter Questions
Problem 36PS: Acetic acid. CH3CO2H, is made industrially by the reaction of methanol and carbon monoxide. CH3OH ()...
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Please calculate the missing energy to complete the complete Born-Haber cycle.
(please give the negative sign "-" if your answer is negative; if your answer is positive, do not put the positive sign "+")

calculate the missing energy to complete the complete born-haber cycle (please indicate whether negative or positive)

*energie de cohesion du réseau ionique = ionic network cohesion energy 

*réaction global = global reaction

 

(please give the missing réaction if it's possible :) with the charges) 

Lis) + ½ F219) > LiF)
-594.1 kJ/mol (réaction globale)
l'énergie de cohésion du réseau ionique
???
kJ/mol
Lig > Lia
+155.2 kJ/mol
+75.3 kJ/mol
Fg + e- → Fg)
-328
kJ/mol
Lig > Li" g) + e-
+520
kJ/mol
(g)
Transcribed Image Text:Lis) + ½ F219) > LiF) -594.1 kJ/mol (réaction globale) l'énergie de cohésion du réseau ionique ??? kJ/mol Lig > Lia +155.2 kJ/mol +75.3 kJ/mol Fg + e- → Fg) -328 kJ/mol Lig > Li" g) + e- +520 kJ/mol (g)
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