STATEMENT-1: Orbital having xz plane as nofe may be `3d_(xy)` STATEMENT-2: `3d_(xy)` has zero radial node.
A
If both the statement are TRUE and STATEMENT-2 is the correct explanation of STATEMENT-1
B
If both the statements are TRUE but STATEMENT-2 is NOT the correct explanation of STATEMENT-1
C
If STATEMENT-1 is TRUE and STATEMENT-2 is FALSE
D
If STATEMENT-1 is FALSE and STATEMENT-2 is TRUE
Text Solution
Verified by Experts
Topper's Solved these Questions
ATOMIC STUCTURE
NARENDRA AWASTHI|Exercise Level- 1|1 Videos
ATOMIC STUCTURE
NARENDRA AWASTHI|Exercise level 2|1 Videos
CHEMICAL EQUILIBRIUM
NARENDRA AWASTHI|Exercise Level 2|1 Videos
Similar Questions
Explore conceptually related problems
For the d_(z^(3)) orbital, the value of m may be
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.
What is a nodal plane ? How many nodal plance are possible for 2p and 3d - orbitals ?
Among 3p, 4s, 3d, 4p orbitals which has least energy ?
Correct energy order of 3p_(x), 3d_(xy), 2p_(x)
The density of electron cloud of the orbital d_(xy) in yz plane is
The density of electron cloud of the orbital d_(xy) in yz plane is
The ratio in which xy- plane divides the line segment joining (-2,3,1 ) ,( 3,5,2,) is
The equation of the plane passing through the point (1, 2, 3) and parallel to xy-plane is