(WF-2) The wave function for a proton moving in 1D is given by: y(x) = Csin(x) for 0 ≤ x ≤ñ and zero everywhere else. (a) Find the value of the normalization constant (C) for the wave function. (b) What is the probability of locating the proton between x = 0 and x = π/4? (c) What is the probability of locating the proton between x = π/2 and x = ?
(WF-2) The wave function for a proton moving in 1D is given by: y(x) = Csin(x) for 0 ≤ x ≤ñ and zero everywhere else. (a) Find the value of the normalization constant (C) for the wave function. (b) What is the probability of locating the proton between x = 0 and x = π/4? (c) What is the probability of locating the proton between x = π/2 and x = ?
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and zero everywhere else.
(a) Find the value of the normalization constant (C) for the wave function.
(b) What is the probability of locating the proton between x = 0 and x = π/4?
(c) What is the probability of locating the proton between x = π/2 and x = n?"
Transcribed Image Text:(WF-2) The wave function for a proton moving in 1D is given by: y(x) = Csin(x) for 0 ≤ x ≤ n
and zero everywhere else.
(a) Find the value of the normalization constant (C) for the wave function.
(b) What is the probability of locating the proton between x = 0 and x = π/4?
(c) What is the probability of locating the proton between x = π/2 and x = n?
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