Match each set of hybrid orbitals from $LIST-I$ with complex(es) given in $LIST-II$. The correct option is
$LIST-I$ $LIST-II$
$P. dsp^2$ $1. [FeF_6]^{4-}$
$Q. sp^3$ $2. [Ti(H_2O)_3Cl_3]$
$R. sp^3d^2$ $3. [Cr(NH_3)_6]^{3+}$
$S. d^2sp^3$ $4. [FeCl_4]^{2-}$
$5. Ni(CO)_4$
$6. [Ni(CN)_4]^{2-}$

  • A
    $P$ $\rightarrow 5; Q$ $\rightarrow 4,6; R$ $\rightarrow 2,3; S$ $\rightarrow 1$
  • B
    $P$ $\rightarrow 5,6; Q$ $\rightarrow 4; R$ $\rightarrow 3; S$ $\rightarrow 1,2$
  • C
    $P$ $\rightarrow 6; Q$ $\rightarrow 4,5; R$ $\rightarrow 1; S$ $\rightarrow 2,3$
  • D
    $P$ $\rightarrow 4,6; Q$ $\rightarrow 5,6; R$ $\rightarrow 1,2; S$ $\rightarrow 3$

Explore More

Similar Questions

The hybridization of $Ag^+$ in the linear complex $[Ag(NH_3)_2]^+$ is

Which $d-$orbital of metal in $[Fe(CO)_5]$ is involved in hybridisation?

The magnetic moment of $Cr$ in $[Cr(H_2O)_6]Cl_3$ is $3.88 \, BM$. Which of the following is the possible orbital distribution for $Cr$?

Difficult
View Solution

In the complex $[SbF_5]^{2-}$,$sp^3d$ hybridization is present. The geometry of the complex is

The magnetic moment of $[MnX_4]^{2-}$ is $5.9 \, BM$. The geometry of the complex ion is: ($X =$ monodentate halide ion)

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo