First, draw out the structures in the following reaction to identify the bonds being broken and the ones being formed. Upload the drawing here. CH4 (g) + 20₂ (g) --> CO₂ (g) + 2H₂O (g) Use the editor to format your answer

Chemistry by OpenStax (2015-05-04)
1st Edition
ISBN:9781938168390
Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Publisher:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Chapter20: Organic Chemistry
Section: Chapter Questions
Problem 2E: What is the difference between the hybridization of carbon atoms' valence orbitals in saturated and...
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First, draw out the structures in the following
reaction to identify the bonds being broken and the
ones being formed. Upload the drawing here.
CH4 (g) + 20₂ (g) --> CO₂ (g) + 2H₂O (g)
Use the editor to format your answer
Transcribed Image Text:First, draw out the structures in the following reaction to identify the bonds being broken and the ones being formed. Upload the drawing here. CH4 (g) + 20₂ (g) --> CO₂ (g) + 2H₂O (g) Use the editor to format your answer
Average Single Bond Energies (kJ per mole)
HCN OF Si P S Cl Br I
H 436 414 389 464 569 293 318 339 431 368 297
347 293 351 439 289 264 259 330 276 238
159 201 272
209
201 243
138 184 368 351
205
159 540 490 285 255 197
176 213 226 360 289
HCZOFSPST-
Si
CI
Br
201
213 230 331 272 213
213 251 213
243 218 209
192 180
151
Average Multiple Bond Energies (kJ per mole)
N=N418
C=C 611
N=N 946
C=C 837
N=0 590
C=0|803
C-N 891
C=0 745
0 0 498
C=O 1075
In CO₂ Only
Remember:
ΔΗ = Σ (Bondenergies of bonds broken) - Σ (bondenergies of bonds formed)
Transcribed Image Text:Average Single Bond Energies (kJ per mole) HCN OF Si P S Cl Br I H 436 414 389 464 569 293 318 339 431 368 297 347 293 351 439 289 264 259 330 276 238 159 201 272 209 201 243 138 184 368 351 205 159 540 490 285 255 197 176 213 226 360 289 HCZOFSPST- Si CI Br 201 213 230 331 272 213 213 251 213 243 218 209 192 180 151 Average Multiple Bond Energies (kJ per mole) N=N418 C=C 611 N=N 946 C=C 837 N=0 590 C=0|803 C-N 891 C=0 745 0 0 498 C=O 1075 In CO₂ Only Remember: ΔΗ = Σ (Bondenergies of bonds broken) - Σ (bondenergies of bonds formed)
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