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Electron density in the YZ plane of 3d(...

Electron density in the YZ plane of `3d_(x^(2)-y^(2))` orbital is

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Consider the following statements: (a) Electron density in the XY plane in 3d_(x^(2)-y^(2)) orbital is zero (b) Electron density in the XY plane in 3d_(z^(2)) orbital is zero. (c ) 2s orbital has one nodel surface (d) for 2p_(z) orbital, XY is the nodal plane. Which of these are incorrect statements :

Consider the following statements: (a) Electron density in the XY plane in 3d_(x^(2)-y^(2)) orbital is zero (b) Electron density in the XY plane in 3d_(z^(2)) orbital is zero. (c ) 2s orbital has one nodel surface (d) for 2p_(z) orbital, XY is the nodal plane. Which of these are incorrect statements :

The electron density in the xy plane in 3d_(x^(2) - y^(2)) orbital is zero

The electron density in the xy- plane in 3d_(x^(2) - y^(2) orbital is zero

The electron density in the xy- plane in 3d_(x^(2) - y^(2) orbital is zero

Which of the following are correct ? (1) Electron density in XY plane for d_(x^(2)-y^(2)) orbital is zero. (2) The energy of 3p-orbital is higher than the energy of 2p-orbital. (3) 3p_(z) orbital has one angular node. (4) 4f-orbital has no radial node.

The electron density in the xy-plane in 3d_(x^2-y^2) orbital is zero.

The electron density in the xy-plane in 3d_(x^2-y^2) orbital is zero.

In case of D_(x^(2)-y^(2) orbital :