MCQ
From left to right, $sp^2, sp^2, sp, sp$ hybridisation is present in
  • $C{H_2} = CH - C \equiv N$
  • B
    $CH_2=C=CH-CH_3$
  • C
    $HC \equiv C - C \equiv CH$
  • D
    $CH \equiv C - CH = C{H_2}$

Answer

Correct option: A.
$C{H_2} = CH - C \equiv N$
a
Option $A$ is correct if the combination is, $sp ^2- sp ^2- sp$, because from left first two carbon atoms have one empty $p$ orbital due to $\pi$ bond, thus $sp ^2$ hybridisation. But last carbon atom has a triple bond that means two $p$ orbitals are empty, thus $sp$ hybridisation.

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

When acetyl chloride is reduced with $LiAlH_4$, the product formed is
Which of the following compounds will evolve hydrogen on treatment with metal
When $9.65$ coulombs of electricity is passed through a solution of silver nitrate (atomic weight of $Ag = 107.87$ taking as $108$) the amount of silver deposited is ............ $\mathrm{mg}$
Liebermann's test is answered by
The correct order of bond dissociation enthalpy of halogens is :
The values of $\Delta H$ for the combustion of ethene and ethyne are $-341.1$  and $-310.0\,kcal$  respectively. Which of the following is a better fuel
The correct structure of histidine in a strongly acidic solution $(pH = 2)$ is
Among the statements $(a)-(d)$, the incorrect ones are

$(a)$ Octahedral $Co(III)$ complexes with strong field ligands have very high magnetic moments

$(b)$ When $\Delta_{0}< P$, the $d-$electron configuration of $Co(III)$ in an octahedral complex is $t_{\text {eg }}^{4} e_{g}^{2}$

$(c)$ Wavelength of light absorbed by $\left[\mathrm{Co}(\mathrm{en})_{3}\right]^{3+}$ is lower than that of $\left[\mathrm{CoF}_{6}\right]^{3-}$

$(d)$ If the $\Delta_{0}$ for an octahedral complex of $\mathrm{Co}(\mathrm{III})$ is $18,000 \;\mathrm{cm}^{-1},$ the $\Delta_{\mathrm{t}}$ for its tetrahedral complex with the same ligand will be $16,000\;\mathrm{cm}^{-1}$

A $5.2$ molal aqueous solution of methyl alcohol, $CH_3OH,$ is supplied. What is the mole fraction of methyl alcohol in the solution ?
Saturated solution of $KNO_3$ is used to make salt bridge because