The ground state energy of a particle of mass m in an infinite potential well is E,. It changes to E,(1 + a x 10-3), when there is a small potential bump of height n²h? 50ml? and width a = L/100, as shown in the figure. The value of a is to two decimal places). V. (up V(x) a
The ground state energy of a particle of mass m in an infinite potential well is E,. It changes to E,(1 + a x 10-3), when there is a small potential bump of height n²h? 50ml? and width a = L/100, as shown in the figure. The value of a is to two decimal places). V. (up V(x) a
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![The ground state energy of a particle of mass m in an infinite potential well is E,. It
changes to E,(1+ a x 10-3), when there is a small potential bump of height
and width a = L/100, as shown in the figure. The value of a is
V.
50ml?
to two decimal places).
(up
V(x)
L-](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F21195eec-4f89-47fb-a60f-b5b680617bdb%2F38cb1baa-0037-4cd3-92b7-dd9ca794163e%2Fecrmts9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The ground state energy of a particle of mass m in an infinite potential well is E,. It
changes to E,(1+ a x 10-3), when there is a small potential bump of height
and width a = L/100, as shown in the figure. The value of a is
V.
50ml?
to two decimal places).
(up
V(x)
L-
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