What product do you expect from this reaction? Br LOCH 3 t OCH 3 H3CO. OH CH3OH

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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### Educational Content: Predicting the Product of a Chemical Reaction

#### Question:
What product do you expect from this reaction?

#### Reaction Diagram:
The starting material is a brominated molecule:
\[ \begin{matrix}
  & CH_3 \\
CH_3-C-CH_2-Br \\
\end{matrix} \]

Reagent:
\[ CH_3OH \]

#### Multiple Choice Options for the Reaction Product:
1. Option A:
   \[ \begin{matrix}
   & OCH_3 \\
CH_3-CH-CH_2-CH_3 \\
\end{matrix} \]

2. Option B:
   \[ \begin{matrix}
  & OCH_3 \\
CH_3-C-CH_3 \\
\end{matrix} \]

3. Option C:
   \[ \begin{matrix}
  & CH_3O \\
  CH_3-CH-CH_2-CH_3 \\
\end{matrix} \]

4. Option D:
   \[ \begin{matrix}
   & OH \\
CH_3-CH-CH_2-CH_3 \\
\end{matrix} \]

#### Explanation:
To determine the product of this reaction, consider the substitution mechanism of bromine with methanol (\(CH_3OH\)). Methanol acts as both a nucleophile and solvent, potentially leading to a nucleophilic substitution reaction (SN1 or SN2 mechanism) depending on the substrate structure.

1. Option A Product Sketch:
   \[ \begin{matrix}
   & OCH_3 \\
CH_3-CH-CH_2-CH_3 \\
\end{matrix}\]

2. Option B Product Sketch:
   \[ \begin{matrix}
   & OCH_3 \\
CH_3-C-CH_3 \\
\end{matrix} \]

3. Option C Product Sketch:
   \[ \begin{matrix}
   & CH_3O \\
CH_3-CH-CH_2-CH_3 \\
\end{matrix} \]

4. Option D Product Sketch:
   \[ \begin{matrix}
   & OH \\
CH_3-CH-CH_2-CH_3 \\
\end{matrix} \]

Carefully analyze the chemical structures and the tendency of substitution reactions to
Transcribed Image Text:### Educational Content: Predicting the Product of a Chemical Reaction #### Question: What product do you expect from this reaction? #### Reaction Diagram: The starting material is a brominated molecule: \[ \begin{matrix} & CH_3 \\ CH_3-C-CH_2-Br \\ \end{matrix} \] Reagent: \[ CH_3OH \] #### Multiple Choice Options for the Reaction Product: 1. Option A: \[ \begin{matrix} & OCH_3 \\ CH_3-CH-CH_2-CH_3 \\ \end{matrix} \] 2. Option B: \[ \begin{matrix} & OCH_3 \\ CH_3-C-CH_3 \\ \end{matrix} \] 3. Option C: \[ \begin{matrix} & CH_3O \\ CH_3-CH-CH_2-CH_3 \\ \end{matrix} \] 4. Option D: \[ \begin{matrix} & OH \\ CH_3-CH-CH_2-CH_3 \\ \end{matrix} \] #### Explanation: To determine the product of this reaction, consider the substitution mechanism of bromine with methanol (\(CH_3OH\)). Methanol acts as both a nucleophile and solvent, potentially leading to a nucleophilic substitution reaction (SN1 or SN2 mechanism) depending on the substrate structure. 1. Option A Product Sketch: \[ \begin{matrix} & OCH_3 \\ CH_3-CH-CH_2-CH_3 \\ \end{matrix}\] 2. Option B Product Sketch: \[ \begin{matrix} & OCH_3 \\ CH_3-C-CH_3 \\ \end{matrix} \] 3. Option C Product Sketch: \[ \begin{matrix} & CH_3O \\ CH_3-CH-CH_2-CH_3 \\ \end{matrix} \] 4. Option D Product Sketch: \[ \begin{matrix} & OH \\ CH_3-CH-CH_2-CH_3 \\ \end{matrix} \] Carefully analyze the chemical structures and the tendency of substitution reactions to
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