An electron is trapped inside an infinite spherical well V (r) = (0, r < a + ∞, r > a . Using the radial Schrodinger equation, determine the bound energies and the corresponding normalized radial wavefunction for the case where the orbital angular momentum of the electron is zero ( i.e., l =0)
An electron is trapped inside an infinite spherical well V (r) = (0, r < a + ∞, r > a . Using the radial Schrodinger equation, determine the bound energies and the corresponding normalized radial wavefunction for the case where the orbital angular momentum of the electron is zero ( i.e., l =0)
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An electron is trapped inside an infinite spherical well
V (r) = (0, r < a
+
∞, r > a
. Using the radial Schrodinger equation, determine the bound energies and the
corresponding normalized radial wavefunction for the case where the orbital
angular momentum of the electron is zero ( i.e., l =0)
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