11) PICK THE COMPOUND(S) WITH two stereogenic centers? H3C A в C D

Chemistry
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Chapter1: Chemical Foundations
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**Question 11: PICK THE COMPOUND(S) WITH TWO STEREOGENIC CENTERS?**

The image provides four structural diagrams of chemical compounds labeled A, B, C, and D. The task is to identify which of these compounds have two stereogenic centers.

- **Compound A**: This is a cyclohexane ring with two chlorine atoms attached at positions 1 and 2. The structure may appear to be chiral due to the presence of stereocenters at these sites.

- **Compound B**: A cyclohexane ring with chlorine atoms at positions 1 and 3 in a trans arrangement, which creates two stereogenic centers.

- **Compound C**: A bicyclic compound featuring a bridgehead, with an additional methyl group, which may involve potential stereogenic centers due to its 3D conformation.

- **Compound D**: Another cyclohexane ring with two hydrogen atoms that appear to be at stereogenic centers, influencing the molecule's chiral properties.

To determine which compounds have two stereogenic centers, one should evaluate the centers in each molecule where configuration changes can lead to different stereoisomers.
Transcribed Image Text:**Question 11: PICK THE COMPOUND(S) WITH TWO STEREOGENIC CENTERS?** The image provides four structural diagrams of chemical compounds labeled A, B, C, and D. The task is to identify which of these compounds have two stereogenic centers. - **Compound A**: This is a cyclohexane ring with two chlorine atoms attached at positions 1 and 2. The structure may appear to be chiral due to the presence of stereocenters at these sites. - **Compound B**: A cyclohexane ring with chlorine atoms at positions 1 and 3 in a trans arrangement, which creates two stereogenic centers. - **Compound C**: A bicyclic compound featuring a bridgehead, with an additional methyl group, which may involve potential stereogenic centers due to its 3D conformation. - **Compound D**: Another cyclohexane ring with two hydrogen atoms that appear to be at stereogenic centers, influencing the molecule's chiral properties. To determine which compounds have two stereogenic centers, one should evaluate the centers in each molecule where configuration changes can lead to different stereoisomers.
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