Q2: A particle is described by the wavefunction (2πχ L for 4 otherwise L Sa CoS -- Y (x) = 4 a) Determine the normalization constant A. b) What is the probability that the particle will be found between x = 0 and x = L/8 if a measurement of its position is made?
Q2: A particle is described by the wavefunction (2πχ L for 4 otherwise L Sa CoS -- Y (x) = 4 a) Determine the normalization constant A. b) What is the probability that the particle will be found between x = 0 and x = L/8 if a measurement of its position is made?
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
Transcribed Image Text:Q1:
In the figure below: state if each wavefunction could be a Schrödinger wavefunction
of an actual physical system? If not, state why.
→ X
(a)
(b)
Q2:
A particle is described by the wavefunction
2πχ
SA cos
L
for
p (x) =
4 Sxs
otherwise
a) Determine the normalization constant A.
b) What is the probability that the particle will be found between x
L/8 if a measurement of its position is made?
= 0 and x =
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