Oxyacetylene welding torches reach temperatures of -3,200 °C using the following reaction: 2 C2H2(g) +5 O2(g) →4 CO2(g) + 2 H2O(g). Use the following table of bond energies to calculate the heat of combusting 5.00 mol of acetylene (C2H2) gas in oxygen. Single Bond H C N O H 432 N CZO 411 346 386 305 167 459 358 201 142 C=C 602 C=O 799 C=C 835 C=O 1072 Multiple Bonds C=N 615 0=0 494 C=N 887 N=N 942 "All values in kJ/mol

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Oxyacetylene welding torches reach temperatures of ~3,200 °C using the following reaction:
2 C2H2(g) +5 O2(g) →4 CO2(g) + 2 H2O(g).
Use the following table of bond energies to calculate the heat of combusting 5.00 mol of acetylene (C2H2) gas in oxygen.
Single
Bond
H
с
N
O
H
432
ONO
411
346
386 305
167
459 358
201
142
C=C 602
C=O 799
Multiple C=C
835
C=O 1072
Bonds C=N 615
0=0 494
C=N
887
N=N 942
All values in kJ/mol"
Number
Units
Transcribed Image Text:Oxyacetylene welding torches reach temperatures of ~3,200 °C using the following reaction: 2 C2H2(g) +5 O2(g) →4 CO2(g) + 2 H2O(g). Use the following table of bond energies to calculate the heat of combusting 5.00 mol of acetylene (C2H2) gas in oxygen. Single Bond H с N O H 432 ONO 411 346 386 305 167 459 358 201 142 C=C 602 C=O 799 Multiple C=C 835 C=O 1072 Bonds C=N 615 0=0 494 C=N 887 N=N 942 All values in kJ/mol" Number Units
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