The z-direction angular momentum operator in quantum mechanics is given as (SPH eqn 44): Ә L3=-ih де Using this expression, and the definition of the spherical harmonics Ym (0,4), satisfy yourself that they are eigenfunctions of L3. What is the eigenvalue of a spherical harmonic Ym (0.4), under the operator L3, in terms of n. m, ħ?
The z-direction angular momentum operator in quantum mechanics is given as (SPH eqn 44): Ә L3=-ih де Using this expression, and the definition of the spherical harmonics Ym (0,4), satisfy yourself that they are eigenfunctions of L3. What is the eigenvalue of a spherical harmonic Ym (0.4), under the operator L3, in terms of n. m, ħ?
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![The z-direction angular momentum operator in quantum mechanics is given as (SPH eqn 44):
Ə
L3 = -ih-
Using this expression, and the definition of the spherical harmonics Y (0), satisfy yourself that they are eigenfunctions of L3.
What is the eigenvalue of a spherical harmonic Ym (0,4), under the operator L3, in terms of n, m, ħ?
1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0941146b-4686-4441-abf6-9aa6e4afd619%2F451d57e8-d999-4993-8c1c-e710a6161e62%2Fc5r3w2d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The z-direction angular momentum operator in quantum mechanics is given as (SPH eqn 44):
Ə
L3 = -ih-
Using this expression, and the definition of the spherical harmonics Y (0), satisfy yourself that they are eigenfunctions of L3.
What is the eigenvalue of a spherical harmonic Ym (0,4), under the operator L3, in terms of n, m, ħ?
1
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