(1) Draw the (E)- and (Z)- isomers of 1,3-dichloro-2-methylbut-2-ene. Using curved arrows, draw (a) an SN2 mechanism and (b) and SN1 mechanism for the substitution reaction shown below. Br G) Draw the organic product(s) formed in the following reactions: Br/ HyO 1)0 2) Zn. H,0 by M Show a sequence of reactions that could be used to synthesize the following compound. You must start forom 3-pentanol. No mechanisms needed. (HINT: You will need to bring together more than one of the reactions you have seen in Módules 3 and 4)

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### Organic Chemistry Exercise

This section covers various topics in organic chemistry, including isomerism, substitution reactions, and synthesis pathways.

#### Question Breakdown:

1. **Isomer Identification:**
   - **Task:** Draw the (E)- and (Z)- isomers of 1,3-dichloro-2-methylbut-2-ene.

2. **Substitution Mechanisms:**
   - **Task:**
     - (a) Using curved arrows, draw an \( S_N2 \) mechanism and
     - (b) an \( S_N1 \) mechanism for the substitution reaction shown below:

       ![Substitution Reaction](URL-to-image)  
       **Structure Shown:** 
       \[
       \text{CH}_3-\text{CH}_2-\text{CH(Cl)-CH}_3 + \text{Br}^- \rightarrow \text{Products}
       \]

3. **Organic Product Formation:**
   - **Task:** Draw the organic product(s) formed in the following reactions:
     - (a) Benzene reacting with Br\(_2\) / H\(_2\)O.
     - (b) Benzene reacting with 1) O\(_3\), 2) Zn, H\(_2\)O.

4. **Synthesis Pathway:**
   - **Task:** Show a sequence of reactions that could be used to synthesize the following compound. You must start from 3-pentanol. No mechanisms needed. 
     - **Hint:** You will need to bring together more than one of the reactions you have seen in Modules 3 and 4.
     - **Target Molecule:** 
       \[
       \text{Cyclopentane with a hydroxyl group} \left( \begin{array}{c}
       \text{on a cyclic structure}
       \end{array} \right)
       \]

#### Explanation:
1. **Isomerism:**
   - Define and illustrate the (E)- (entgegen, opposite sides) and (Z)- (zusammen, same side) isomers using 1,3-dichloro-2-methylbut-2-ene. These geometric isomers are distinguished by the positions of substituents around a double bond.

2. **Substitution Mechanisms:**
   - For \( S_N2 \) (bimolecular nucleoph
Transcribed Image Text:### Organic Chemistry Exercise This section covers various topics in organic chemistry, including isomerism, substitution reactions, and synthesis pathways. #### Question Breakdown: 1. **Isomer Identification:** - **Task:** Draw the (E)- and (Z)- isomers of 1,3-dichloro-2-methylbut-2-ene. 2. **Substitution Mechanisms:** - **Task:** - (a) Using curved arrows, draw an \( S_N2 \) mechanism and - (b) an \( S_N1 \) mechanism for the substitution reaction shown below: ![Substitution Reaction](URL-to-image) **Structure Shown:** \[ \text{CH}_3-\text{CH}_2-\text{CH(Cl)-CH}_3 + \text{Br}^- \rightarrow \text{Products} \] 3. **Organic Product Formation:** - **Task:** Draw the organic product(s) formed in the following reactions: - (a) Benzene reacting with Br\(_2\) / H\(_2\)O. - (b) Benzene reacting with 1) O\(_3\), 2) Zn, H\(_2\)O. 4. **Synthesis Pathway:** - **Task:** Show a sequence of reactions that could be used to synthesize the following compound. You must start from 3-pentanol. No mechanisms needed. - **Hint:** You will need to bring together more than one of the reactions you have seen in Modules 3 and 4. - **Target Molecule:** \[ \text{Cyclopentane with a hydroxyl group} \left( \begin{array}{c} \text{on a cyclic structure} \end{array} \right) \] #### Explanation: 1. **Isomerism:** - Define and illustrate the (E)- (entgegen, opposite sides) and (Z)- (zusammen, same side) isomers using 1,3-dichloro-2-methylbut-2-ene. These geometric isomers are distinguished by the positions of substituents around a double bond. 2. **Substitution Mechanisms:** - For \( S_N2 \) (bimolecular nucleoph
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