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When the Potential Energy of a System Is Independent of Time

Question 2

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 normalized.
D) depends only on the center of mass,
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 normalized. D)  depends only on the center of mass,   , of the system. E)  depends on the vector positions,   <sub> </sub> <sub>i</sub>, of each particle in the system. , of the system.
E) depends on the vector positions,
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 normalized. D)  depends only on the center of mass,   , of the system. E)  depends on the vector positions,   <sub> </sub> <sub>i</sub>, of each particle in the system.
i, of each particle in the system.

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