What is the reticular energy? Mg²+ (g) + 0(g) AH2nd IE (Mg) = +1451 Mg*(g) + 0(g) Mg(g) + 0(g) Mg(g) + 1/2O₂(g) route A AH1st IE (Mg) - +738 ΔΗ(0%) = +249 Mg(s) + 1/2O₂(g) Mg²+(g) + 0²-(g) AH1stea(0)=-141 Mg²+ (g) + 0(g) AH (Mg) = +148 AH2ndea (0) +798 AHLE(MgO) not to scale (c) doc brown

Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter8: Thermochemistry
Section: Chapter Questions
Problem 71QAP: Consider burning ethane gas, C2H6 in oxygen (combustion) forming CO2 and water. (a) How much energy...
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What is the reticular energy?
Mg²+ (g) + 0(g)
AH2nd IE (Mg)
= +1451
Mg*(g) + 0(g)
Mg(g) + 0(g)
Mg(g) + 1/₂O₂(g)
MgO(s)
Mg(s) + 1/₂O₂(g)
route A
AH1st IE (Mg) = +738
Mg²+(g) + 0²-(g)
AH1stea(0)=-141
Mg²+(g) + 0(g)
AH (0₂)= +249
AH (Mg) +148
at
AH (MgO)=-602
AH2ndea (0)
= +798
route B
AHLE(MgO)
not to scale
(c) doc brown
Transcribed Image Text:What is the reticular energy? Mg²+ (g) + 0(g) AH2nd IE (Mg) = +1451 Mg*(g) + 0(g) Mg(g) + 0(g) Mg(g) + 1/₂O₂(g) MgO(s) Mg(s) + 1/₂O₂(g) route A AH1st IE (Mg) = +738 Mg²+(g) + 0²-(g) AH1stea(0)=-141 Mg²+(g) + 0(g) AH (0₂)= +249 AH (Mg) +148 at AH (MgO)=-602 AH2ndea (0) = +798 route B AHLE(MgO) not to scale (c) doc brown
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