The bond dissociation energy to break 3 N-H bond(s) in 1 mole of NH3 molecules is Single Bond H N H 432 |1233 kJ 411 346 N 386 305 167 O 459 358 201 142 C=C 602 C=0 799 1 Multiple C=C Bonds 835 C=0 1072 C=N 615 O=0 494 4 C=N 887 N=N 942 **All values in kJ/mol*" 7 8 9. 2. LO

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The bond dissociation energy to break 3 N-H bond(s) in 1 mole of NH3
molecules is
Single
H
N
Bond
H
432
|1233 kJ
C
411
346
N
386
305
167
459
358
201
142
C=C
602
C=O
799
1
2
C=C
835
C=O
1072
Multiple
Bonds
C=N
615
O=0
494
4
6.
C
C=N
887
N=N
942
**All values in kJ/mol**
7
8
+/-
х 100
Transcribed Image Text:The bond dissociation energy to break 3 N-H bond(s) in 1 mole of NH3 molecules is Single H N Bond H 432 |1233 kJ C 411 346 N 386 305 167 459 358 201 142 C=C 602 C=O 799 1 2 C=C 835 C=O 1072 Multiple Bonds C=N 615 O=0 494 4 6. C C=N 887 N=N 942 **All values in kJ/mol** 7 8 +/- х 100
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