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Q. Consider the following orbitals $3s, 2p_{x}, 4d_{xy}, 4d^{2}_{z}, 3d_{x^{2}-y^{2}} , 3p_{y},4s, 4p_{z}$ and find total number of orbital (s) having even number of nodal plane

Chemical Bonding and Molecular Structure

Solution:

$3s : 0$ Nodal plane
$4d_{z}^2 : 0$ Nodal plane
$4s : 0$ Nodal plane
$2p_{x} : 1$ Nodal plane
$3d_{x^{2}-y^{2}}:2$ Nodal plane
$4p_{z}:1$ Nodal plane
$4d_{xy}:2$ Nodal plane
$3\,p_{y} :1$ Nodal plane
$4d_{xy}\, 4_{z^{2}}, 3d_{x^{2}-y^{2}}$, (Two)