Step 1: Understanding the geometries.
For a square planar geometry, the \( d_{x^2 - y^2} \) orbital is involved in hybridization, while for trigonal bipyramidal geometry, the \( d_{z^2} \) orbital is involved.
Step 2: Analyzing the options.
(A) \( d_{z^2} \) and \( d_{z^2} \): Incorrect, two \( d_{z^2} \) orbitals are not involved in the hybridization for these geometries.
(B) \( d_{yz} \) and \( d_{z^2} \): Incorrect, \( d_{yz} \) is not involved in the hybridization for square planar or trigonal bipyramidal geometries.
(C) \( d_{x^2 - y^2} \) and \( d_{z^2} \): Correct, these orbitals are involved in the hybridization for square planar and trigonal bipyramidal geometries.
(D) \( d_{x^2 - y^2} \) and \( d_{yz} \): Incorrect, \( d_{yz} \) is not involved in the hybridization for these geometries.
Step 3: Conclusion.
The correct answer is (C) \( d_{x^2 - y^2} \) and \( d_{z^2} \).
Match List - I with List - II:
List - I:
(A) \([ \text{MnBr}_4]^{2-}\)
(B) \([ \text{FeF}_6]^{3-}\)
(C) \([ \text{Co(C}_2\text{O}_4)_3]^{3-}\)
(D) \([ \text{Ni(CO)}_4]\)
List - II:
(I) d²sp³ diamagnetic
(II) sp²d² paramagnetic
(III) sp³ diamagnetic
(IV) sp³ paramagnetic
One mole of a monoatomic ideal gas starting from state A, goes through B and C to state D, as shown in the figure. Total change in entropy (in J K\(^{-1}\)) during this process is ............... 
The number of chiral carbon centers in the following molecule is ............... 
A tube fitted with a semipermeable membrane is dipped into 0.001 M NaCl solution at 300 K as shown in the figure. Assume density of the solvent and solution are the same. At equilibrium, the height of the liquid column \( h \) (in cm) is ......... 
An electron at rest is accelerated through 10 kV potential. The de Broglie wavelength (in A) of the electron is .............