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The total number of cyclic isomers possible for a hydrocarbon with the molecular formula C4H6 is

  • a)
    5

  • b)
    2

  • c)
    1

  • d)
    3

Correct answer is option 'A'. Can you explain this answer?
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Cyclic Isomers of C4H6

Cyclic isomers are isomers that have a closed ring structure. In this case, we are looking for cyclic isomers of a hydrocarbon with the molecular formula C4H6.

Step 1: Draw the possible structures

The first step is to draw all possible structures that can be formed with the given formula. For C4H6, there are two possible structures:

1. Butadiene
2. Cyclobutene

Step 2: Identify the cyclic isomers

We need to identify which of the above structures are cyclic isomers. Cyclobutene is a cyclic isomer because it has a closed ring structure. Butadiene is not a cyclic isomer because it does not have a closed ring structure.

Step 3: Determine the number of cyclic isomers

Since there is only one cyclic isomer (cyclobutene), the total number of cyclic isomers possible for a hydrocarbon with the molecular formula C4H6 is 1.

However, it is important to note that if we were asked to find all possible isomers (not just cyclic isomers), then the answer would be 5. The five possible isomers are:

1. Butadiene
2. Cyclobutene
3. 1,2-Butadiene
4. 1,3-Butadiene
5. Vinylacetylene

Therefore, the correct answer to the given question is option 'A' (5).
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The total number of cyclic isomers possible for a hydrocarbon with the molecular formula C4H6 isa)5b)2c)1d)3Correct answer is option 'A'. Can you explain this answer?
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