In cyclohexane, the chair conformation is more stable than the boat conformation because of which following reason(s)? A) There is more steric repulsion between the axial substituents in the boat conformation There are more eclipsing hydrogens in the boat conformation, thus increasing the overall 8) torsional strain. C) The boat conformation forces the C-C bonds to stretch out longer than what they usually prefer. D) The boat conformation's SP orbitals are twisted. E) A and B. F) A and C. G) A and D. H) B and C. 1) B and D. J) C and D. K) A, B, and C L) A, B, and D M) A, C, and D N) B, C, and D O) All the above. P) None of the above.

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Chapter1: Chemical Foundations
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In cyclohexane, the chair conformation is more stable than the boat conformation because of
which following reason(s)?
A) There is more steric repulsion between the axial substituents in the boat conformation.
B) There are more eclipsing hydrogens in the boat conformation, thus increasing the overall
torsional strain.
C) The boat conformation forces the C-C bonds to stretch out longer than what they usually prefer.
D) The boat conformation's SP orbitals are twisted.
E)
A and B.
F) A and C.
G) A and D.
H)
B and C.
1)
B and D.
J)
C and D.
K) A, B, and C
L) A, B, and D
M) A, C, and D
N) B, C, and D
O) All the above.
P) None of the above.
OAA
OB. B
Oc.c
OD. D
Ο.Ε.Ε
Transcribed Image Text:In cyclohexane, the chair conformation is more stable than the boat conformation because of which following reason(s)? A) There is more steric repulsion between the axial substituents in the boat conformation. B) There are more eclipsing hydrogens in the boat conformation, thus increasing the overall torsional strain. C) The boat conformation forces the C-C bonds to stretch out longer than what they usually prefer. D) The boat conformation's SP orbitals are twisted. E) A and B. F) A and C. G) A and D. H) B and C. 1) B and D. J) C and D. K) A, B, and C L) A, B, and D M) A, C, and D N) B, C, and D O) All the above. P) None of the above. OAA OB. B Oc.c OD. D Ο.Ε.Ε
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