8. A hydrogen atom is prepared in a state: 1 V(r, 0 , 6) = ;v3,2,0(r, 0, 4) + 2.1,1(r, 0, $) + Aþ3,2,1(r, 0, 4) 3.20(r, 0, 6) + V3 02,1,1(r, 0, 4) + Avý3,2,1(r, 0, 4) where n.l.m, (r, 0, 9) are the eigenfunctions of the hydrogen atom. What is the probability that the atom has the orbital angular momentum magnitude /6h?
8. A hydrogen atom is prepared in a state: 1 V(r, 0 , 6) = ;v3,2,0(r, 0, 4) + 2.1,1(r, 0, $) + Aþ3,2,1(r, 0, 4) 3.20(r, 0, 6) + V3 02,1,1(r, 0, 4) + Avý3,2,1(r, 0, 4) where n.l.m, (r, 0, 9) are the eigenfunctions of the hydrogen atom. What is the probability that the atom has the orbital angular momentum magnitude /6h?
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![8. A hydrogen atom is prepared in a state:
1
i
V (r, 0, ¢) = ;V3,2,0(r, 0, ø) + 2,1,1(r, 0, ø) + Aþ3,2,1(r, 0, ø)
where nim, (r, 0, 4) are the eigenfunctions of the hydrogen atom. What is the probability that the atom
has the orbital angular momentum magnitude /6h?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F34f68b11-3fa6-46b0-be55-8820e9d5a361%2F0234f14d-1c21-420e-b2b4-bd79d7e23541%2F27erzr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:8. A hydrogen atom is prepared in a state:
1
i
V (r, 0, ¢) = ;V3,2,0(r, 0, ø) + 2,1,1(r, 0, ø) + Aþ3,2,1(r, 0, ø)
where nim, (r, 0, 4) are the eigenfunctions of the hydrogen atom. What is the probability that the atom
has the orbital angular momentum magnitude /6h?
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