MCQ
Suitable reaction condition for preparation of Methyl phenyl ether is
  • A
    $Ph - Br , MeO ^{-} Na ^{+}$
  • B
    $PhO ^{-} Na ^{+}, MeOH$
  • $PhO ^{-} Na ^{+}, MeBr$
  • D
    Benzene, MeBr

Answer

Correct option: C.
$PhO ^{-} Na ^{+}, MeBr$
c

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Product is :
Conc. ${H_2}S{O_4}$ reacts with ${C_2}{H_5}OH$ at ${170\,^o}C$ to form
Which of the following contains the highest percentage of protein
Assertion : The halogens absorb visible light.

Reason : All halogens are coloured.

Product $(X)$ is
In the presence of a dilute base ${C_6}{H_5}CHO$ and $C{H_3}CHO$ react together to give a product. The product is
The maximum and minimum melting point of first and second transition series elements respectively are obtained with
In the sequence of the following reactions $X $ and $Y$  are respectively

$C{{H}_{3}}OH\xrightarrow{HI}C{{H}_{3}}I\xrightarrow{KCN}$

$C{{H}_{3}}CN\xrightarrow{\text{reduction}}X\xrightarrow{HN{{O}_{3}}}Y$

The reactions of $Cl _2$ gas with cold-dilute and hot-concentrated $NaOH$ in water give sodium salts to two (different) oxoacids of chlorine, $P$ and $Q$, respectively. The $Cl _2$ gas reacts with $SO _2$ gas, in presence of charcoal, to give a product $R$. $R$ reacts with white phosphours to give a compound $S$. On hydrolysis, $S$ gives an oxoacid of phosphours $T$

$1.$ $P$ and $Q$, respectively, are the sodium salts of

$(A)$ hypochlorus and chloric acids

$(B)$ hypochlorus and chlorus acids

$(C)$ chloric and perchloric acids

$(D)$ chloric and hypochlorus acids

$2.$ $R , S$ and $T$, respectively, are

$(A)$ $SO _2 Cl _2, PCl _5$ and $H _3 PO _4$

$(B)$ $SO _2 Cl _2, PCl _3$ and $H _3 PO _3$

$(C)$ $SOCl _2, PCl _3$ and $H _3 PO _2$

$(D)$ $SOCl _2, PCl _5$ and $H _3 PO _4$

Give the answer question $1$ and $2.$

If $0.01 \,M$ solution of an electrolyte has a resistance of $40 \,ohms$ in a cell having a  cell constant of $0.4\,cm^{-1}$ then its molar conductance in $ohm^{-1}\, cm^2 \,mol^{-1}$ will be :-