Given below are some nitrogen-containing compounds. Each of them is treated with $HCl$ separately. $1.0 \ g$ of the most basic compound will consume $........$ $mg$ of $HCl$. ($Given$ molar mass in $g \ mol^{-1}$: $C:12, H:1, O:16, Cl:35.5$)

  • A
    $341$
  • B
    $241$
  • C
    $141$
  • D
    $541$

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$NBS \xrightarrow{KOBr} (A)$. The product $(A)$ is:

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Match the Compounds (List-$I$) with the appropriate Catalyst/Reagents (List-$II$) for their reduction or conversion into corresponding amines.
List-$I$ (Compounds) List-$II$ (Catalyst/Reagents)
$A$. $R-CONH_2$ $I$. $NaOH$ (aqueous)
$B$. $C_6H_5NO_2$ $II$. $H_2 / Ni$
$C$. $R-C \equiv N$ $III$. $LiAlH_4, H_2O$
$D$. $N$-alkylphthalimide $IV$. $Sn,HCl$

Choose the correct answer from the options given below:

The ammonolysis of alcohol is represented by the reaction $xCH_3OH + yNH_3 \xrightarrow[Al_2O_3/ThO_2]{300-400^{\circ}C} \text{Products}$. The products formed are:

$X \ g$ of ethanamine was subjected to reaction with $NaNO_2 / HCl$ followed by hydrolysis to liberate $N_2$ and $HCl$. The $HCl$ generated was completely neutralized by $0.2 \ mol$ of $NaOH$. $X$ is . . . .

The correct sequence of reagents for the following transformation is:

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