Calculate an approximate heat of combustion for ethane (C2H6) in kilojoules per mole by using the bond dissociation energies in the table. (The strength of the O =0 bond is 498 kJ/mol, and that of a C 0 bond in CO2 is 804 kJ/mol.) Express the energy to four significant figures and include the appropriate units.

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Chapter15: Energy And Chemical Change
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Problem 112A: sample of natural gas is analyzed and found to be88.4% methane (CH4) and 11.6% ethane (C2H6) bymass....
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Calculate an approximate heat of combustion for ethane (C, H6) in kilojoules per mole by using the bond dissociation
energies in the table. (The strength of the O = 0 bond is 498 kJ/mol, and that of a C =0 bond in CO, is 804
kJ/mol.)
Express the energy to four significant figures and include the appropriate units.
Average Bond Dissociation Energies, D (k3/mol)
H-H
436
C-H
410
N-H
390
0-F
180
1-1
151
H-C
410
C-C
350
N-C
300
0-CI
200
S-F
310
H-F-
570
C-F
450
N-F
270
0-Br
210
S-CI
250
S-Br
8-S
H-CI
432
C-CI
330
N-CI
200
0-1
220
210
H-Br
C-Br
N-Br
0-N
200
225
366
270
240
H-I
298
C-I
240
N-N
240
0-0
180
H-N
390
C-N
300
N-O
200
F-F
159
H-O
460
C-0
350
0-H
460
Cl-CI
243
H-S
340
C-S
260
0-C
350
Br-Br
193
Multiple covalent bonds
CO
732
O-O
498
NN
945
C C
CaC
965
728
Transcribed Image Text:Calculate an approximate heat of combustion for ethane (C, H6) in kilojoules per mole by using the bond dissociation energies in the table. (The strength of the O = 0 bond is 498 kJ/mol, and that of a C =0 bond in CO, is 804 kJ/mol.) Express the energy to four significant figures and include the appropriate units. Average Bond Dissociation Energies, D (k3/mol) H-H 436 C-H 410 N-H 390 0-F 180 1-1 151 H-C 410 C-C 350 N-C 300 0-CI 200 S-F 310 H-F- 570 C-F 450 N-F 270 0-Br 210 S-CI 250 S-Br 8-S H-CI 432 C-CI 330 N-CI 200 0-1 220 210 H-Br C-Br N-Br 0-N 200 225 366 270 240 H-I 298 C-I 240 N-N 240 0-0 180 H-N 390 C-N 300 N-O 200 F-F 159 H-O 460 C-0 350 0-H 460 Cl-CI 243 H-S 340 C-S 260 0-C 350 Br-Br 193 Multiple covalent bonds CO 732 O-O 498 NN 945 C C CaC 965 728
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