Using the bond brekage and formation energy values, calculate the AH of the reaction below in kJ. C-H = 413 kJ mol-, Cl-CI = 243 kJ mol-, F-F = 159 kJ mol-, C-F = 453 kJ mol", C-CI = 339 kJ mol-, H-F = 565 kJ mol-, H-CI = 427 kJ mol-1 CH.(g) + 2 Cl2(g) + 2 F2(g) → CF2C½(g) + 2 HF(g) + 2 HCI (g)

Chemistry for Engineering Students
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ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter10: Entropy And The Second Law Of Thermodynamics
Section: Chapter Questions
Problem 10.92PAE: Using only the data given below, determine G for the following reaction: NO(g)+O(g)NO2(g) (Remember...
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Using the bond brekage and formation energy values, calculate the AH of the reaction below in
kJ.
C-H = 413 kJ mol", Cl-CI = 243 kJ mol", F-F = 159 kJ mol-,
C-F = 453 kJ mol", C-CI = 339 kJ mol",
H-F = 565 kJ mol-, H-CI = 427 kJ mol-1
%3D
%3D
CH.(g) + 2 Cl2(g) + 2 F2(g) → CF;Cl½(g) + 2 HF(g) + 2 HCI (g)
Transcribed Image Text:Using the bond brekage and formation energy values, calculate the AH of the reaction below in kJ. C-H = 413 kJ mol", Cl-CI = 243 kJ mol", F-F = 159 kJ mol-, C-F = 453 kJ mol", C-CI = 339 kJ mol", H-F = 565 kJ mol-, H-CI = 427 kJ mol-1 %3D %3D CH.(g) + 2 Cl2(g) + 2 F2(g) → CF;Cl½(g) + 2 HF(g) + 2 HCI (g)
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