Consider this reaction that occurs via this curved arrow mechanism. H₂N Part: 0 / 2 Part 1 of 2 H H bl HIC CH Bra H Draw the structure of the major organic product of this reaction.

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Consider this reaction that occurs via this curved arrow mechanism.

**Diagram Explanation:**

- The diagram represents a chemical reaction showing the interaction between ammonia (NH₂) and a bromoethane derivative.
- The diagram includes the following components:
  - An NH₂ group with a lone pair of electrons.
  - An ethane structure where a bromine atom (Br) is bonded to a carbon, represented alongside hydrogen atoms (H) bonded to two carbon atoms.
  
- The curved arrows indicate:
  - The lone pair on the NH₂ attacking the carbon atom bonded to the bromine.
  - The bond between the carbon and the bromine breaking, with electrons moving towards the bromine.

**Reaction Steps:**

1. NH₂ uses its lone pair to attack the electrophilic carbon which is bound to the Br atom.
2. The C-Br bond breaks, allowing Br to leave.

**Exercise:**

- Part: 0 / 2

- Part 1 of 2: Draw the structure of the major organic product of this reaction.

**Drawing Tool:**

- The area below provides a drawing tool with options to draw structures.
- Instructions: "Click and drag to start drawing a structure."

The user is expected to use their knowledge of organic chemistry to draw the resultant major organic product from the reaction.
Transcribed Image Text:Consider this reaction that occurs via this curved arrow mechanism. **Diagram Explanation:** - The diagram represents a chemical reaction showing the interaction between ammonia (NH₂) and a bromoethane derivative. - The diagram includes the following components: - An NH₂ group with a lone pair of electrons. - An ethane structure where a bromine atom (Br) is bonded to a carbon, represented alongside hydrogen atoms (H) bonded to two carbon atoms. - The curved arrows indicate: - The lone pair on the NH₂ attacking the carbon atom bonded to the bromine. - The bond between the carbon and the bromine breaking, with electrons moving towards the bromine. **Reaction Steps:** 1. NH₂ uses its lone pair to attack the electrophilic carbon which is bound to the Br atom. 2. The C-Br bond breaks, allowing Br to leave. **Exercise:** - Part: 0 / 2 - Part 1 of 2: Draw the structure of the major organic product of this reaction. **Drawing Tool:** - The area below provides a drawing tool with options to draw structures. - Instructions: "Click and drag to start drawing a structure." The user is expected to use their knowledge of organic chemistry to draw the resultant major organic product from the reaction.
In addition to Br⁻, what is the other product formed in this reaction? Select the single best answer.

- ○ CH₃OH
- ○ ⁻OH
- ○ CH₃CH₂OH
- ○ H₂O
- ○ NH₃
- ○ ⁻NH₂

There are no graphs or diagrams associated with this question.
Transcribed Image Text:In addition to Br⁻, what is the other product formed in this reaction? Select the single best answer. - ○ CH₃OH - ○ ⁻OH - ○ CH₃CH₂OH - ○ H₂O - ○ NH₃ - ○ ⁻NH₂ There are no graphs or diagrams associated with this question.
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