All but one of the following compounds react with aniline to give acetanilide. Which one does not?

  • A
    $CH_3COCl$
  • B
    $(CH_3CO)_2O$
  • C
    $CH_3CHO$
  • D
    $CH_3COOC_6H_5$

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Similar Questions

Match the compounds given in List-$I$ with the items given in List-$II$.
List-$I$ List-$II$
$I.$ Benzenesulphonyl Chloride $A.$ Zwitterion
$II.$ Sulphanilic acid $B.$ Hinsberg reagent
$III.$ Alkyl Diazonium salts $C.$ Dyes
$IV.$ Aryl Diazonium salts $D.$ Conversion to alcohols

Major end product of the following sequence of reaction is: $CH_3-CH_2-CH_2-CONH_2$ $\xrightarrow{Ca(OH)_2, Cl_2, \Delta} X$ $\xrightarrow{HNO_2} Z$

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Given below are two statements:
Statement $I$: $o$-Phenylenediamine can be synthesized from $o$-xylene using simpler reagents in the order: $i)$ Acidic $KMnO_4$,$ii)$ Ammonia,$iii)$ Bromine and alkali.
Statement $II$: Aniline can be converted into benzene using reagents in the order: $(i)$ Bromine-$H_2O$,$(ii)$ $NaNO_2 / HCl$ $(0-5^{\circ} C)$,$(iii)$ aq. $H_3PO_2$.
In the light of the above statements,choose the correct answer from the options given below.

Identify the product $B$ in the following reaction:
$C_6H_5NH_2$ $\xrightarrow[0^\circ-5^\circ C]{NaNO_2/HCl} A$ $\xrightarrow{Ph-N(CH_3)_2} B$

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Among the compounds given below,the order of basicity is:
$(I)$ Piperidine
$(II)$ Pyridine
$(III)$ Morpholine
$(IV)$ Pyrrole

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