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psi is the solution of Schrodinger's wav...

`psi` is the solution of Schrodinger's wave equation.
Draw the shape of d-orbitals.

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psi is the solution of Schrodinger's wave equation. Give the significance of psi and psi^2 .

What is the shape of p- orbital?

What is the shape of p- orbital?

Quantum numbers are a set of four numbers used to designate electron in an atom. Draw the shape of orbital having n=1 and l=0 .

The quantum number not obtained from the Schrodinger's wave equation is:

The quantum number not obtained from the Schrodinger's wave equation is:

The correct Schrodinger's wave equation for an election with total energy E and potential energy V is given by

The correct Schrodinger's wave equation for an electron with total energy E and potential energy V is given by : (del^(2)Psi)/(del x^(2))+(del^(2)Psi)/(dely^(2)) +(del^(2)Psi)/(dz^(2))+(8pi^(2))/(mh^(2)) (E-V) Psi=0 ; (del^(2)Psi)/(del x^(2)) +(del^(2)Psi)/(dely^(2)) +(del^(2)Psi)/(delz^(2))+(8pim)/(h^(2))(E-V)Psi=0 ; (del^(2)Psi)/(delx^(2)) +(del^(2)Psi)/(dely^(2)) +(del^(2)Psi)/(delz^(2)) +(8pi^(2)m)/(h^(2))(E-V)Psi=0 ; (del^(2)Psi)/(delx^(2))+(del^(2)Psi)/(dely^(2))+(del^(2)Psi)/(delz^(2)) +(8pi^(2)h)/(m^(2))(E-V)Psi=0

The formation of molecular orbitals can be described by the linear combination of atomic orbitals a) Which one of the following correctly represents the formation of bonding molecular orbital from the atomic orbitals having wave functions psi_A & psi_B ?