- AThe hybridisation state of $N$ in all the phase is same
- BThe shape of $NO_2^ - $ is bent while $NO_3^ - $ is pyramidal
- ✓The hybrid state of $N$ in $NO_3^ - $ and $NO_2^ - $ is same
- DThe hybrid state of $N$ in $NO_2^+$ is $sp^3$
$NO _3{ }^{-}- sp ^2$ hybridized with three bond pairs.
$NO _2^{+}-s p$ hybridised with $2$ bond pairs.
$NO _2{ }^{-}- sp ^2$ hybridized with $2$ bond pairs and one lone pair.
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$\mathop {CH_3^ + }\limits_{\rm{I}} $ $\mathop {{H_3}{O^ + }}\limits_{{\rm{II}}} $ $\mathop {N{H_3}}\limits_{{\rm{III}}} $ $\mathop {CH_3^ - }\limits_{{\rm{IV}}} $
$Toluene\,\, \xrightarrow[{2.\,{H^ + }}]{{1.\,KMn{O_4}/O{H^ - }}}I\xrightarrow{{SOC{l_2}}}II\xrightarrow{{N{H_3}}}III\xrightarrow{{OB{r^ - }}}IV$ is
$(i)$ $X + Y \rightleftharpoons M$ very rapid equilibrium
$(ii)$ $M + Z \to P$ slow
$(iii)$ $O + Y \to N$ very fast
What is the rate law for this reaction
$\left[ Ag \left( H _{2} O \right)_{2}\right]\left[ Ag ( CN )_{2}\right]$ is :

