Give the major organic product for each of the reactions

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Give the major organic product for each of the reactions

### Reaction 1:

**Reactants:**
- 2-Methylpropene (an alkene with a terminal double bond) 
- Chlorine gas (Cl₂)

**Conditions:**
- Presence of water (H₂O)

**Reaction Arrow:**
- Indicates the transformation of reactants into products in the presence of water.

---

### Reaction 2:

**Reactants:**
- Cyclohexene (a cyclic alkene with a single double bond)
- Acetic acid (CH₃COOH, also known as ethanoic acid)

**Products:**
- Reaction products are not specified but involve transformation in the presence of the given reactants.

**Reaction Arrow:**
- Points towards the expected transformation, likely an addition or substitution reaction resulting in new organic compounds.

---

### Explanation:

- **Reaction 1:** This may involve an addition reaction, common for alkenes where chlorine and water participate, typically leading to the formation of halohydrins.

- **Reaction 2:** The combination of cyclohexene and acetic acid could indicate an esterification process or other substitution reaction, depending on additional reagents or catalysts not listed in the diagram. 

These reactions are typical in organic chemistry for demonstrating transformations of alkenes under various conditions.
Transcribed Image Text:### Reaction 1: **Reactants:** - 2-Methylpropene (an alkene with a terminal double bond) - Chlorine gas (Cl₂) **Conditions:** - Presence of water (H₂O) **Reaction Arrow:** - Indicates the transformation of reactants into products in the presence of water. --- ### Reaction 2: **Reactants:** - Cyclohexene (a cyclic alkene with a single double bond) - Acetic acid (CH₃COOH, also known as ethanoic acid) **Products:** - Reaction products are not specified but involve transformation in the presence of the given reactants. **Reaction Arrow:** - Points towards the expected transformation, likely an addition or substitution reaction resulting in new organic compounds. --- ### Explanation: - **Reaction 1:** This may involve an addition reaction, common for alkenes where chlorine and water participate, typically leading to the formation of halohydrins. - **Reaction 2:** The combination of cyclohexene and acetic acid could indicate an esterification process or other substitution reaction, depending on additional reagents or catalysts not listed in the diagram. These reactions are typical in organic chemistry for demonstrating transformations of alkenes under various conditions.
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