It is harder to break a C-C double bond than a C-C single bond because breaking the double bond requires more energy. It is harder to break a C Csingle bes
It is harder to break a C-C double bond than a C-C single bond because breaking the double bond requires more energy. It is harder to break a C Csingle bes
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Concept explainers
Bond Parameters
Many factors decide the covalent bonding between atoms. Some of the bond parameters are bond angle, bond order, enthalpy, bond length, etc. These parameters decide what kind of bond will form in atoms. Hence it is crucial to understand these parameters in detail and understand how changing these parameters affects the kind of bonding or various characteristics.
Bond Dissociation Energy
The tendency of an atom to attract an electron is known as its electronegativity.
Question
![Given the table of bond energies, which of the following is an accurate comparison of the energetics of breaking bonds?
H-H 436
H-F 569
H-CI 432
H-Br 366
H-I 298
C-H 410
C-c 350
CIN 300
C10 350
C-F 450
CICI 330
C-Br 270
CII
240
Table of Average Bond Energies (kJ/mole)
N-H 390
NIN
240
N-F
270
N CI 200
N-Br 240
N1O 200
O-H
460
O O
142
O -F 180
O -CI 200
220
✓
F-F 157
F-Cl
251
F-Br
234
Cl-Cl
Cl-Br
243
219
Br-Br 194
1-1
153
179
1-Br
I-CI 208
280
1-F
C=C
C=0
CIN
C=S
010
498
N=N 418
N=0
607
C C
C=O
C=N
NEN
611
745
615
477
835
1077
891
941
It is harder to break a C-C single bond than a C=C double bond because breaking the single bond releases more energy.
It is harder to break a C-C double bond than a C-C single bond because breaking the double bond requires more energy.
It is harder to break a C-C single bond than a C=C double bond because breaking the single bond requires more energy.
It is harder to break a C=C double bond than a C-C single bond because breaking the double bond releases more energy.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa569f4a8-14fb-4989-a1a7-b30887b91567%2F1eaaf6b0-7e24-4e3b-95c8-f208428732ed%2F1ewaayv_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Given the table of bond energies, which of the following is an accurate comparison of the energetics of breaking bonds?
H-H 436
H-F 569
H-CI 432
H-Br 366
H-I 298
C-H 410
C-c 350
CIN 300
C10 350
C-F 450
CICI 330
C-Br 270
CII
240
Table of Average Bond Energies (kJ/mole)
N-H 390
NIN
240
N-F
270
N CI 200
N-Br 240
N1O 200
O-H
460
O O
142
O -F 180
O -CI 200
220
✓
F-F 157
F-Cl
251
F-Br
234
Cl-Cl
Cl-Br
243
219
Br-Br 194
1-1
153
179
1-Br
I-CI 208
280
1-F
C=C
C=0
CIN
C=S
010
498
N=N 418
N=0
607
C C
C=O
C=N
NEN
611
745
615
477
835
1077
891
941
It is harder to break a C-C single bond than a C=C double bond because breaking the single bond releases more energy.
It is harder to break a C-C double bond than a C-C single bond because breaking the double bond requires more energy.
It is harder to break a C-C single bond than a C=C double bond because breaking the single bond requires more energy.
It is harder to break a C=C double bond than a C-C single bond because breaking the double bond releases more energy.
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