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Which of the molecules below shows geometric isomerism? A) C5H10 B) C3H6 C) C4H6 D) C4H10O E) C4H10

Question

Which of the molecules below shows geometric isomerism?

A) C5H10
B) C3H6
C) C4H6
D) C4H10O
E) C4H10

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Solution

Geometric isomerism, also known as cis-trans isomerism, occurs when there is restricted rotation in a molecule, which is usually due to the presence of a double bond or a ring structure. This leads to different spatial arrangements of the same atoms, hence the term 'geometric'.

Let's analyze each option:

A) C5H10: This molecule could be a straight chain alkene with a double bond (pent-2-ene) or a cycloalkane (cyclopentane). Both structures can show geometric isomerism.

B) C3H6: This molecule is propene, which has a double bond but not enough carbons to form geometric isomers.

C) C4H6: This molecule could be buta-1,3-diene or cyclobutene. Both structures can show geometric isomerism.

D) C4H10O: This molecule could be butan-1-ol, butan-2-ol, 2-methylpropan-1-ol, or 2-methylpropan-2-ol. None of these structures can show geometric isomerism as they do not have a double bond or a ring structure.

E) C4H10: This molecule is butane, which is a straight chain alkane. It cannot show geometric isomerism as it does not have a double bond or a ring structure.

So, the molecules that show geometric isomerism are A) C5H10 and C) C4H6.

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