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Direction (Q. Nos. 27-30) This section contains 4 questions. when worked out will result in an integer from 0 to 9 (both inclusive)


Q.


For hydrocarbon with molecular formula C5H8, how many acyclic isomers without consecutive pi-bonds are possible? 

Correct answer is '3'. Can you explain this answer?
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Direction (Q. Nos. 27-30) This section contains 4questions. when worke...
C5H8 has the following three isomers :



CH3CH2CH2C≡CH


CH3CH2C≡CCH3


(CH3)2CH−C≡CH
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Direction (Q. Nos. 27-30) This section contains 4questions. when worke...
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Direction (Q. Nos. 27-30) This section contains 4questions. when worke...

Acyclic Isomers of C5H8 without Consecutive Pi-bonds

To determine the number of acyclic isomers of C5H8 without consecutive pi-bonds, we need to consider the different ways in which the carbon atoms can be arranged in a chain.

Isomer 1:
- The first isomer will have a straight chain of 5 carbon atoms with a double bond at one end and a methyl group at another carbon atom.
- This arrangement satisfies the given molecular formula C5H8 without having consecutive pi-bonds.

Isomer 2:
- The second isomer will have a branched chain with a double bond between two carbon atoms and a methyl group attached to the third carbon atom.
- This arrangement also satisfies the given molecular formula and the condition of no consecutive pi-bonds.

Isomer 3:
- The third isomer will have a cyclic structure with 5 carbon atoms forming a ring and a double bond within the ring.
- This cyclic structure fulfills the molecular formula requirement and the condition of no consecutive pi-bonds.

Therefore, there are 3 possible acyclic isomers of C5H8 without consecutive pi-bonds.
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Direction (Q. Nos. 27-30) This section contains 4questions. when worked out will result in an integer from 0 to 9 (both inclusive)Q.For hydrocarbon with molecular formula C5H8, how many acyclic isomers without consecutive pi-bonds are possible?Correct answer is '3'. Can you explain this answer?
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