Consider a particle in the one-dimensional box with the following wave function: psi(x, 0) = Cx(a−x) a. When the system is at psi(x, 0), what is ⟨x(hat)⟩? b. When the system is at psi(x, 0), what is ⟨x(hat)2⟩? c. When the system is at psi(x, 0), what is ⟨p(hat)⟩?
Consider a particle in the one-dimensional box with the following wave function: psi(x, 0) = Cx(a−x) a. When the system is at psi(x, 0), what is ⟨x(hat)⟩? b. When the system is at psi(x, 0), what is ⟨x(hat)2⟩? c. When the system is at psi(x, 0), what is ⟨p(hat)⟩?
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Consider a particle in the one-dimensional box with the following wave function: psi(x, 0) = Cx(a−x)
a. When the system is at psi(x, 0), what is ⟨x(hat)⟩?
b. When the system is at psi(x, 0), what is ⟨x(hat)2⟩?
c. When the system is at psi(x, 0), what is ⟨p(hat)⟩?
d. When the system is at psi(x, 0), what is ⟨p(hat)2⟩?
12. When the system is at psi(x, 0), what is Δx?
13. When the system is at psi(x, 0), what is Δp?
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d. When the system is at psi(x, 0), what is ⟨p(hat)2⟩?
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