For the molecule shown select all the substituents that are trans to the Br group. Br Me Он Hp tBu NH2 Ha Et Ci

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Chapter1: Chemical Foundations
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**Instruction:**

For the molecule shown, select **all** the substituents that are *trans* to the Br group.

**Diagram Analysis:**

The diagram depicts a complex cyclohexane ring structure with various substituents attached to it. Here is a detailed description of each substituent and its position relative to the bromine (Br) group:

1. **Br (Bromine):** Placed on top of the ring, usually presumed as an axial substituent.
2. **I (Iodine):** Positioned equatorially, opposite to Br.
3. **Et (Ethyl Group):** Attached adjacent to Iodine in an axial position.
4. **OH (Hydroxyl Group):** Equatorial, positioned similarly to Br.
5. **Me (Methyl Group):** An axial substituent on a side opposite to Br.
6. **tBu (tert-Butyl Group):** Equatorial, opposite to Br.
7. **F (Fluorine):** Equatorial, on the opposite side relative to Br.
8. **NH₂ (Amino Group):** Equatorial, trans to Br.
9. **Cl (Chlorine):** Axial, positioned on the opposite side of the ring from Br.
10. **Hₐ and Hᵦ (Hydrogens):** These hydrogens are implied but specifically labeled for stereochemical reference.

**Instruction Application:**

Considering the definition of *trans* (opposite side of the ring), identify all groups that meet this criterion relative to Br.
Transcribed Image Text:**Instruction:** For the molecule shown, select **all** the substituents that are *trans* to the Br group. **Diagram Analysis:** The diagram depicts a complex cyclohexane ring structure with various substituents attached to it. Here is a detailed description of each substituent and its position relative to the bromine (Br) group: 1. **Br (Bromine):** Placed on top of the ring, usually presumed as an axial substituent. 2. **I (Iodine):** Positioned equatorially, opposite to Br. 3. **Et (Ethyl Group):** Attached adjacent to Iodine in an axial position. 4. **OH (Hydroxyl Group):** Equatorial, positioned similarly to Br. 5. **Me (Methyl Group):** An axial substituent on a side opposite to Br. 6. **tBu (tert-Butyl Group):** Equatorial, opposite to Br. 7. **F (Fluorine):** Equatorial, on the opposite side relative to Br. 8. **NH₂ (Amino Group):** Equatorial, trans to Br. 9. **Cl (Chlorine):** Axial, positioned on the opposite side of the ring from Br. 10. **Hₐ and Hᵦ (Hydrogens):** These hydrogens are implied but specifically labeled for stereochemical reference. **Instruction Application:** Considering the definition of *trans* (opposite side of the ring), identify all groups that meet this criterion relative to Br.
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