Identify the major and minor products for the E2 reaction that occurs when each of the following substrates is treated with a strong base. 

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Identify the major and minor products for the E2 reaction that occurs when each of the following substrates is treated with a strong base. 
The image shows a structural formula of an organic compound. It consists of a benzene ring (a hexagon with alternating double bonds) attached to a two-carbon chain. The first carbon in the chain is connected to a chiral center, which has a bromine (Br) atom and a tert-butyl group (a branching group with three carbon atoms in a "T" shape) attached to it.

### Description of the Structure:
- **Benzene Ring**: The hexagon with alternating double bonds represents a benzene ring, a common aromatic structure in organic chemistry.
- **Side Chain**: 
  - The benzene ring is connected to a two-carbon chain.
  - The first carbon (next to the benzene ring) is a chiral center, indicated by the wedge bond.
  - A bromine atom (Br) is attached to this chiral center.
  - The tert-butyl group, shown as three lines branching from a single point, is connected to the same chiral center.

This structure represents a brominated aromatic compound with a tertiary butyl group, which might be studied for its chemical properties and reactivity in organic chemistry.
Transcribed Image Text:The image shows a structural formula of an organic compound. It consists of a benzene ring (a hexagon with alternating double bonds) attached to a two-carbon chain. The first carbon in the chain is connected to a chiral center, which has a bromine (Br) atom and a tert-butyl group (a branching group with three carbon atoms in a "T" shape) attached to it. ### Description of the Structure: - **Benzene Ring**: The hexagon with alternating double bonds represents a benzene ring, a common aromatic structure in organic chemistry. - **Side Chain**: - The benzene ring is connected to a two-carbon chain. - The first carbon (next to the benzene ring) is a chiral center, indicated by the wedge bond. - A bromine atom (Br) is attached to this chiral center. - The tert-butyl group, shown as three lines branching from a single point, is connected to the same chiral center. This structure represents a brominated aromatic compound with a tertiary butyl group, which might be studied for its chemical properties and reactivity in organic chemistry.
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