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Which structure diagram completes the table of physical structures of the main functional groups?

\begin{tabular}{|c|c|c|c|c|c|}
\hline
Alcohol & Ether & Ketone & Aldehyde & Carboxylic acid & Ester \\
\hline
\begin{tabular}{l}
\texttt{[R]O}
\end{tabular} &
\begin{tabular}{l}
\begin{tabular}{l}
[tex]$R$[/tex] \\
[tex]$\vert$[/tex] \\
[tex]$O$[/tex] \\
[tex]$\vert$[/tex] \\
[tex]$R^{\prime}$[/tex]
\end{tabular}
\end{tabular} &
\begin{tabular}{l}
\texttt{[R]C=O[R']}
\end{tabular} &
\begin{tabular}{l}
\texttt{[R]C=O}
\end{tabular} &
\begin{tabular}{l}
\texttt{[R]C(=O)O}
\end{tabular} &
\begin{tabular}{l}
\texttt{[R]OC([R'])=O}
\end{tabular} \\
\hline
\end{tabular}


Sagot :

To complete the table of physical structures for the main functional groups, let's detail the structural representations for each group.

1. Alcohol: Represented structurally as:
```
R-OH
```
where R is any alkyl or aryl group bonded to a hydroxyl group (-OH).

2. Ether: Represented structurally as:
```
R
\
O
/
R'
```
where R and R' are alkyl or aryl groups bonded to an oxygen atom.

3. Ketone: A ketone has the structure defined by:
```
O
||
R-C-R'
```
where R and R' can be different or identical alkyl or aryl groups attached to a carbonyl group (C=O).

4. Aldehyde: Represented structurally as:
```
R-CHO
```
where an alkyl or aryl group (R) is bonded to a formyl group (–CHO).

5. Carboxylic Acid: Has the structure:
```
R-COOH
```
where R is bonded to a carboxyl group (COOH).

6. Ester: Represented structurally as:
```
R-COOR'
```
where an alkyl or aryl group (R) is bonded to a carbonyl group (C=O), which is further bonded to an alkoxy group (OR').

Given these descriptions, we can organize the complete table as follows:

[tex]\[ \begin{tabular}{|c|c|c|c|c|c|} \hline Alcohol & Ether & Ketone & Aldehyde & \begin{tabular}{l} Carboxylic \\ acid \end{tabular} & Ester \\ \hline \begin{tabular}{l} $R$ \\ $ | $ \\ $ O $ \\ $ | $ \\ $ H$ \end{tabular} & \begin{tabular}{l} $R$ \\ $ \ $ \\ $ O $ \\ $ / $ \\ $R'$ \end{tabular} & \begin{tabular}{l} $R $ \\ $ | $\\ $C $ \\ $ | ||$\\ $-C- $\\ $ | R'$ \end{tabular} & \begin{tabular}{l} $\\ $R-C=O$ \\ $| \\ \end{tabular} & \begin{tabular}{l} $R-C-OH$ \\ $ ||$\\ $ O $ \end{tabular} & \begin{tabular}{l} $R-C-O-R'$ \\ $ || $\\ $ O $ \end{tabular} \\ \hline \end{tabular} \][/tex]