Schrödinger wave equation and model systems: particle in a box, rigid rotator and harmonic oscillator - Online Test

30:00
1. What fundamental equation in quantum mechanics describes the wave function of a quantum system?
2. The time-independent Schrödinger equation is used to find:
3. For a 'particle in a box' model, what is the boundary condition for the wave function (ψ) at the walls of the box?
4. In the 'particle in a box' model of length L, what is the quantization condition for the energy levels?
5. What does the quantum number 'n' represent in the 'particle in a box' model?
6. What is the ground state energy (lowest possible energy) for a particle in a one-dimensional box of length L?
7. If the length of a one-dimensional box is doubled, how does the ground state energy of the particle change?
8. What is the wave function for the ground state (n=1) of a particle in a one-dimensional box of length L?
9. The 'rigid rotator' model in quantum mechanics is used to describe the rotational motion of:
10. For a rigid rotator, the moment of inertia (I) depends on:

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