1. a) Draw the product for the following reaction. Note, RCO3H is a peroxy acid. 2. Draw the product for the following reaction. OH RCO3H H*, H₂O OH PCC 3. Draw the product for the following reaction. CrO 3 H₂SO4, H₂O

Organic Chemistry: A Guided Inquiry
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Author:Andrei Straumanis
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Chapter9: Addition Via Cyclic Intermediate
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### Organic Reactions

1. **Problem:**
    a) Draw the product for the following reaction. Note, RCO3H is a peroxy acid.
    
    **Reaction Scheme:**
    
    ![Scheme 1](Reaction 1)
    
    \[ \chemfig{**6(------)-CH_2-CH_2} \overset{\ce{RCO3H}}{\rightarrow}
    \overset{\mathrm{H^+, H2O}}{\rightarrow} \]

2. **Problem:**
    Draw the product for the following reaction.
    
    **Reaction Scheme:**
    
    ![Scheme 2](Reaction 2)
    
    \[ \chemfig{**6(------)-CH_2-OH} \overset{\ce{PCC}}{\rightarrow}\]

3. **Problem:**
    Draw the product for the following reaction.
    
    **Reaction Scheme:**
    
    ![Scheme 3](Reaction 3)
    
    \[ \chemfig{**6(------)-CH_2-OH} \overset{\ce{CrO3}}{\rightarrow}
    \overset{\mathrm{H2SO4, H2O}}{\rightarrow}\]
    
### Detailed Explanation:

For each given reaction, you are required to identify the product formed when the starting material undergoes the specified chemical process.

1. **First Reaction**: The reaction involves an alkene (\texttt{**6-\chemfig{-}-} with two additional carbon atoms) treated with a peroxy acid (\texttt{\ce{RCO3H}}) in the presence of acidic water (\texttt{\ce{H^+, H2O}}). Peroxy acids typically convert alkenes into epoxides.

2. **Second Reaction**: A benzyl alcohol (\texttt{**6(------)-CH_2-OH}) is oxidized using PCC (Pyridinium chlorochromate). PCC generally converts primary alcohols into aldehydes.

3. **Third Reaction**: A benzyl alcohol (\texttt{**6(------)-CH_2-OH}) is oxidized in the presence of chromic acid (\texttt{\ce{CrO3}}), sulfuric acid (\texttt{\ce{H2SO4}}), and water (\texttt{\ce{H2O}}). This typically results
Transcribed Image Text:### Organic Reactions 1. **Problem:** a) Draw the product for the following reaction. Note, RCO3H is a peroxy acid. **Reaction Scheme:** ![Scheme 1](Reaction 1) \[ \chemfig{**6(------)-CH_2-CH_2} \overset{\ce{RCO3H}}{\rightarrow} \overset{\mathrm{H^+, H2O}}{\rightarrow} \] 2. **Problem:** Draw the product for the following reaction. **Reaction Scheme:** ![Scheme 2](Reaction 2) \[ \chemfig{**6(------)-CH_2-OH} \overset{\ce{PCC}}{\rightarrow}\] 3. **Problem:** Draw the product for the following reaction. **Reaction Scheme:** ![Scheme 3](Reaction 3) \[ \chemfig{**6(------)-CH_2-OH} \overset{\ce{CrO3}}{\rightarrow} \overset{\mathrm{H2SO4, H2O}}{\rightarrow}\] ### Detailed Explanation: For each given reaction, you are required to identify the product formed when the starting material undergoes the specified chemical process. 1. **First Reaction**: The reaction involves an alkene (\texttt{**6-\chemfig{-}-} with two additional carbon atoms) treated with a peroxy acid (\texttt{\ce{RCO3H}}) in the presence of acidic water (\texttt{\ce{H^+, H2O}}). Peroxy acids typically convert alkenes into epoxides. 2. **Second Reaction**: A benzyl alcohol (\texttt{**6(------)-CH_2-OH}) is oxidized using PCC (Pyridinium chlorochromate). PCC generally converts primary alcohols into aldehydes. 3. **Third Reaction**: A benzyl alcohol (\texttt{**6(------)-CH_2-OH}) is oxidized in the presence of chromic acid (\texttt{\ce{CrO3}}), sulfuric acid (\texttt{\ce{H2SO4}}), and water (\texttt{\ce{H2O}}). This typically results
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