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When the Potential Energy of a System Is Independent of Time

Question 5

Multiple Choice

When the potential energy of a system is independent of time, the wave function of the system:


A) is a constant.
B) is directly proportional to the time.
C) cannot be normalised.
D) depends only on the centre of mass, , of the system. When the potential energy of a system is independent of time, the wave function of the system: A) is a constant. B) is directly proportional to the time. C) cannot be normalised. D) depends only on the centre of mass, , of the system.   E) depends on the vector positions, i, of each particle in the system.
E) depends on the vector positions, i, of each particle in the system. When the potential energy of a system is independent of time, the wave function of the system: A) is a constant. B) is directly proportional to the time. C) cannot be normalised. D) depends only on the centre of mass, , of the system.   E) depends on the vector positions, i, of each particle in the system.

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