Draw the product of the substitution reaction shown below. Ignore the inorganic byproducts.

Chemistry
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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
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**Problem 11 of 32**

**Instruction:**
Draw the product of the substitution reaction shown below. Ignore the inorganic byproducts.

**Chemical Diagram:**
A molecular structure is depicted with a fused ring system consisting of two benzene rings and an oxygen atom with a negative charge, bonded to sodium (Na^+).

**Reaction Conditions:**
- Reagent: Ethyl iodide (CH₃CH₂I)
- Solvent: Dimethyl sulfoxide (DMSO)

**Description:**
In this substitution reaction, the sodium phenoxide ion will react with ethyl iodide in the presence of DMSO, a polar aprotic solvent, facilitating the nucleophilic substitution reaction. The expected product will involve the displacement of iodide and the formation of an ether linkage through the O-ethyl group. Draw the final organic product without accounting for inorganic byproducts.
Transcribed Image Text:**Problem 11 of 32** **Instruction:** Draw the product of the substitution reaction shown below. Ignore the inorganic byproducts. **Chemical Diagram:** A molecular structure is depicted with a fused ring system consisting of two benzene rings and an oxygen atom with a negative charge, bonded to sodium (Na^+). **Reaction Conditions:** - Reagent: Ethyl iodide (CH₃CH₂I) - Solvent: Dimethyl sulfoxide (DMSO) **Description:** In this substitution reaction, the sodium phenoxide ion will react with ethyl iodide in the presence of DMSO, a polar aprotic solvent, facilitating the nucleophilic substitution reaction. The expected product will involve the displacement of iodide and the formation of an ether linkage through the O-ethyl group. Draw the final organic product without accounting for inorganic byproducts.
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