Which of the following molecules are chiral? Br Br سل Br Br Br "Br Br Br IV

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Which of the following molecules are chiral?

**Question:**

Which of the following molecules are chiral?

**Diagram Explanation:**

The image shows four cyclohexane structures, each labeled with Roman numerals (I, II, III, IV). Each molecule has bromine (Br) substituents attached at different positions on the cyclohexane ring.

- **Molecule I**: A cyclohexane ring with two bromine atoms attached to the same carbon. Both bromines are in a wedge configuration, indicating they are on the same side of the plane.
  
- **Molecule II**: A cyclohexane ring with one bromine atom. One bromine is shown with a wedged bond, representing an out-of-plane position.

- **Molecule III**: A cyclohexane ring with two bromine atoms. One bromine is in a wedge configuration (out of plane) and the other in a dash configuration (into the plane), indicating they are opposite to each other on the plane.

- **Molecule IV**: A cyclohexane ring with one bromine atom, shown with a wedged bond, indicating the bromine is above the plane of the ring.

**Chirality Consideration:**

Only molecules with an asymmetric carbon center (chiral center) are chiral. A chiral center is typically a carbon atom that is bonded to four different substituents.
Transcribed Image Text:**Question:** Which of the following molecules are chiral? **Diagram Explanation:** The image shows four cyclohexane structures, each labeled with Roman numerals (I, II, III, IV). Each molecule has bromine (Br) substituents attached at different positions on the cyclohexane ring. - **Molecule I**: A cyclohexane ring with two bromine atoms attached to the same carbon. Both bromines are in a wedge configuration, indicating they are on the same side of the plane. - **Molecule II**: A cyclohexane ring with one bromine atom. One bromine is shown with a wedged bond, representing an out-of-plane position. - **Molecule III**: A cyclohexane ring with two bromine atoms. One bromine is in a wedge configuration (out of plane) and the other in a dash configuration (into the plane), indicating they are opposite to each other on the plane. - **Molecule IV**: A cyclohexane ring with one bromine atom, shown with a wedged bond, indicating the bromine is above the plane of the ring. **Chirality Consideration:** Only molecules with an asymmetric carbon center (chiral center) are chiral. A chiral center is typically a carbon atom that is bonded to four different substituents.
Expert Solution
Step 1: Interpretation of given problem

Chiral compounds are compounds that have chiral carbons and no symmetry.

Chiral carbon is carbon that has four different groups attached.

Chiral carbon is indicated by *.


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