Question 1 1 pts How many unique products (including regioisomers and stereoisomers) could be produced with the molecule shown below is heated in ethanol? Assume no rearrangements will occur. ELOH 0 1 O 2 O4 O 5
Question 1 1 pts How many unique products (including regioisomers and stereoisomers) could be produced with the molecule shown below is heated in ethanol? Assume no rearrangements will occur. ELOH 0 1 O 2 O4 O 5
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:**Question 1** (1 point)
How many unique products (including regioisomers and stereoisomers) could be produced with the molecule shown below when it is heated in ethanol? Assume no rearrangements will occur.
**Diagram Explanation**: The diagram shows a cyclohexane ring with a chlorine atom attached as a leaving group. The molecule is subjected to ethanol (EtOH) in the presence of heat (indicated by the delta symbol).
Options:
- ☐ 1
- ☐ 2
- ☐ 4
- ☐ 5

Transcribed Image Text:**Title: Product Formation in Organic Reactions**
**Description:**
In this problem, you are asked to rank the following products from least to greatest amount present under the specified reaction conditions.
**Reaction Conditions:**
- Reactant: An organic compound containing a sulfonyl group attached to a benzene ring.
- Reagent: KOMe (Potassium Methoxide)
**Products:**
1. **Product I:**
- Structure: A branched alkene with a methyl group.
2. **Product II:**
- Structure: A different branched alkene configuration.
3. **Product III:**
- Structure: A straight-chain alkene.
4. **Product IV:**
- Structure: Another straight-chain alkene, distinct from Product III.
**Task:**
Rank these products (I, II, III, IV) from the least amount to the greatest amount formed.
**Options:**
1. IV < III < II < I
2. I < II < IV < III
3. IV < I < III < II
4. I < III < IV < II
**Instructions:**
Analyze the reaction to determine which product is favored based on the stability of the intermediates and the conditions provided. Consider factors such as the reactivity of different alkenes and the stability of carbocations if applicable. Select the correct option that ranks the products accordingly.
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