Identify the best representation of the first step in the reaction between alkene I and H₂O under acidic conditions: Question Image: Answer Image: a a) b a) n Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. d b) I c) d) b) II III d) H

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Identify the Best Representation of the First Step in the Reaction between Alkene I and H₂O under Acidic Conditions:**

**Question Image:**

- **I**: A cyclopentene with an extended alkyl chain.
- **II**: A cyclohexene with an extended alkyl chain.
- **III**: A cyclopentane with a terminal alkene group.

**Answer Image:**

- **a)**: Shows a cyclopentene with a curved arrow from the double bond to a proton from water (H₂O), indicating the formation of a carbocation.
  
- **b)**: Displays a similar structure with a curved arrow from the proton to the double bond of a cyclohexene, suggesting a carbocation formation adjacent to the ring.
  
- **c)**: Features a cyclopentane with a curved arrow from the water's oxygen to the double bond, indicating protonation and formation of a carbocation at the extended chain terminal.
  
- **d)**: Illustrates a cyclopentane with a curved arrow showing carbocation formation at a different site compared to option c.

**Instructions:**

Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer.

- **a)**
- **b)**
- **c)**
- **d)**
Transcribed Image Text:**Identify the Best Representation of the First Step in the Reaction between Alkene I and H₂O under Acidic Conditions:** **Question Image:** - **I**: A cyclopentene with an extended alkyl chain. - **II**: A cyclohexene with an extended alkyl chain. - **III**: A cyclopentane with a terminal alkene group. **Answer Image:** - **a)**: Shows a cyclopentene with a curved arrow from the double bond to a proton from water (H₂O), indicating the formation of a carbocation. - **b)**: Displays a similar structure with a curved arrow from the proton to the double bond of a cyclohexene, suggesting a carbocation formation adjacent to the ring. - **c)**: Features a cyclopentane with a curved arrow from the water's oxygen to the double bond, indicating protonation and formation of a carbocation at the extended chain terminal. - **d)**: Illustrates a cyclopentane with a curved arrow showing carbocation formation at a different site compared to option c. **Instructions:** Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. - **a)** - **b)** - **c)** - **d)**
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