Home
Class 12
CHEMISTRY
The Schrodinger wave equation for an ele...

The Schrodinger wave equation for an electron in a potential field V, in three demensions is:

A

`(del^(2) psi)/(del x^(2))+(del^(2)phi)/(dely^(2))+(del^(2)psi)/(delz^(2))+(8pi^(2)m)/h(E-V)phi=0`

B

`(del^(2)psi)/(delx^(2))+(del^(2)psi)/(dely^(2))+(del^(2)psi)/(delz^(2))+(8pi^(2))/(mh^(2))(E-V)psi=0`

C

`(del^(2)psi)/(delx^(2))+(del^(2)psi)/(dely^(2))+(del^(2)psi)/(delz^(2))+(8pi^(2)m)/(h^(2))[E-V]psi=0`

D

`(del^(2)psi)/(delx^(2))+(del^(2)psi)/(dely^(2))+(del^(2)psi)/(delz^(2))+(8pi^(2)m)/(h^(2))+[E+V]psi=0`

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Topper's Solved these Questions

  • STRUCTURE OF ATOM

    MODERN PUBLICATION|Exercise MULTIPLE CHOICE QUESTIONS (LEVEL II)|90 Videos
  • STRUCTURE OF ATOM

    MODERN PUBLICATION|Exercise MULTIPLE CHOICE QUESTIONS (LEVEL III)|10 Videos
  • STATES OF MATTER

    MODERN PUBLICATION|Exercise RECENT EXAMINATION QUESTIONS|12 Videos
  • SURFACE CHEMISTRY

    MODERN PUBLICATION|Exercise RECENT EXAMINATION QUESTIONS|15 Videos

Similar Questions

Explore conceptually related problems

Derive a relation between electric field and potential

The de Brogle wavelength of an electron accelrated to a potential of 400 V is approximately

Derive the relation between electric field and electric potential.

The figure gives the electric potential V as a function of distance through four regions , on x-axis. Which of the following is true for the magnitude of the electric field E in these regions?