Bonus 2 (2 pts) When angular momentum f = 3, draw all possible angular momentum distributions in 3D, and then calculate the smallest diameter of cone among them. You need to put coordinates for intercepts on z axis as well as x axis and y axis. The magnitude of size of orbitals needs to be scaled properly. A 424 = 1. ((+1) 23. 4 2.4 = 3. (3+1) 4 2.4=12124
Bonus 2 (2 pts) When angular momentum f = 3, draw all possible angular momentum distributions in 3D, and then calculate the smallest diameter of cone among them. You need to put coordinates for intercepts on z axis as well as x axis and y axis. The magnitude of size of orbitals needs to be scaled properly. A 424 = 1. ((+1) 23. 4 2.4 = 3. (3+1) 4 2.4=12124
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![Bonus 2 (2 pts) When angular momentum f = 3, draw all possible angular momentum
distributions in 3D, and then calculate the smallest diameter of cone among them. You need to
put coordinates for intercepts on z axis as well as x axis and y axis. The magnitude of size of
orbitals needs to be scaled properly.
A
424 = 1. ((+1) 23. 4
2.4 = 3. (3+1) 4
2.4=12124](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd6039e52-60b3-4ae1-b575-68d9236f4955%2F1917b4c2-15a4-4452-b01a-48081af4d515%2F6fy61l_processed.png&w=3840&q=75)
Transcribed Image Text:Bonus 2 (2 pts) When angular momentum f = 3, draw all possible angular momentum
distributions in 3D, and then calculate the smallest diameter of cone among them. You need to
put coordinates for intercepts on z axis as well as x axis and y axis. The magnitude of size of
orbitals needs to be scaled properly.
A
424 = 1. ((+1) 23. 4
2.4 = 3. (3+1) 4
2.4=12124
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