Draw the major product from this reaction. Use wedge and dash bonds to indicate relative stereochemistry where appropriate. Ignore acid byproduct. 1. Br2, H₂O 2. NaOH Drawing P

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### Synthetic Reaction of an Alkene

**Objective:**  
Draw the major product from this reaction. Use wedge and dash bonds to indicate relative stereochemistry where appropriate. Ignore acid byproduct.

**Reaction Overview:**  

1. **Starting Material:**  
   - The image shows a linear alkene structure with four carbon atoms in a zigzag pattern. The second bond from the right is a double bond, indicating the presence of an alkene functional group.

2. **Reagents Used:**  
   - Step 1: \( \text{Br}_2, \text{H}_2\text{O} \)  
   - Step 2: \( \text{NaOH} \)

**Diagram Explanation:**  
- **Initial Structure:**  
  - The structure is a skeletal formula illustrating the carbon backbone with a double bond, common in organic chemistry to denote the connectivity without showing hydrogen atoms explicitly.

- **Reaction Steps:**  
  - **Step 1:** The reaction with bromine (\( \text{Br}_2 \)) in aqueous conditions typically leads to the formation of a halohydrin. This involves the anti-addition of a bromine and a hydroxyl group across the double bond.
  
  - **Step 2:** Treatment with sodium hydroxide (\( \text{NaOH} \)) can lead to further transformations, such as the formation of an epoxide if applicable under the reaction conditions.

**Reaction Product:**
- Students should draw the major organic product showing the stereochemistry using wedge (out of the plane) and dash (into the plane) bonds to reflect the relative spatial arrangement of substituents.

**Note:**  
The specific product drawing area is designated but left blank, encouraging students to apply reaction knowledge to complete the transformation.
Transcribed Image Text:### Synthetic Reaction of an Alkene **Objective:** Draw the major product from this reaction. Use wedge and dash bonds to indicate relative stereochemistry where appropriate. Ignore acid byproduct. **Reaction Overview:** 1. **Starting Material:** - The image shows a linear alkene structure with four carbon atoms in a zigzag pattern. The second bond from the right is a double bond, indicating the presence of an alkene functional group. 2. **Reagents Used:** - Step 1: \( \text{Br}_2, \text{H}_2\text{O} \) - Step 2: \( \text{NaOH} \) **Diagram Explanation:** - **Initial Structure:** - The structure is a skeletal formula illustrating the carbon backbone with a double bond, common in organic chemistry to denote the connectivity without showing hydrogen atoms explicitly. - **Reaction Steps:** - **Step 1:** The reaction with bromine (\( \text{Br}_2 \)) in aqueous conditions typically leads to the formation of a halohydrin. This involves the anti-addition of a bromine and a hydroxyl group across the double bond. - **Step 2:** Treatment with sodium hydroxide (\( \text{NaOH} \)) can lead to further transformations, such as the formation of an epoxide if applicable under the reaction conditions. **Reaction Product:** - Students should draw the major organic product showing the stereochemistry using wedge (out of the plane) and dash (into the plane) bonds to reflect the relative spatial arrangement of substituents. **Note:** The specific product drawing area is designated but left blank, encouraging students to apply reaction knowledge to complete the transformation.
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