QUESTION IMAGE
Question
quantum numbers
write the four quantum numbers (n,l,m,m) for each circled electron in the diagram.
name tony xiong
electron a
electron b
electron c
electron d
electron e
electron f
electron g
electron h
electron i
electron j
electron k
electron l
electron m
n = principal energy level = 1, 2, 3, 4, 5, 6, 7
l = sublevel = s=0, p=1, d=2, f=3
ml = orbital sublevel = s = 0; p = -1, 0, +1; d = -2, -1, 0, +1, +2; f = -3, -2, -1, 0, +1, +2, +3
ms = magnetic spin = +1/2 or -1/2
Electron A
Step1: Determine \(n\)
The principal energy level \(n = 2\) (from \(2s\) orbital).
Step2: Determine \(l\)
For \(s\) - orbital, \(l=0\).
Step3: Determine \(m_l\)
For \(s\) - orbital (\(l = 0\)), \(m_l=0\).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(2,0,0,-\frac{1}{2})\)
Electron B
Step1: Determine \(n\)
The principal energy level \(n = 2\) (from \(2p\) orbital).
Step2: Determine \(l\)
For \(p\) - orbital, \(l = 1\).
Step3: Determine \(m_l\)
The first \(p\) - orbital (\(m_l=- 1\)).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(2,1,-1,-\frac{1}{2})\)
Electron C
Step1: Determine \(n\)
The principal energy level \(n = 4\) (from \(4s\) orbital).
Step2: Determine \(l\)
For \(s\) - orbital, \(l=0\).
Step3: Determine \(m_l\)
For \(s\) - orbital (\(l = 0\)), \(m_l=0\).
Step4: Determine \(m_s\)
The spin is \(+\frac{1}{2}\) (up - arrow).
So, \((n,l,m_l,m_s)=(4,0,0,+\frac{1}{2})\)
Electron D
Step1: Determine \(n\)
The principal energy level \(n = 3\) (from \(3d\) orbital).
Step2: Determine \(l\)
For \(d\) - orbital, \(l = 2\).
Step3: Determine \(m_l\)
The fifth \(d\) - orbital (\(m_l = + 2\)).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(3,2,+2,-\frac{1}{2})\)
Electron E
Step1: Determine \(n\)
The principal energy level \(n = 4\) (from \(4p\) orbital).
Step2: Determine \(l\)
For \(p\) - orbital, \(l = 1\).
Step3: Determine \(m_l\)
The first \(p\) - orbital (\(m_l=-1\)).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(4,1,-1,-\frac{1}{2})\)
Electron F
Step1: Determine \(n\)
The principal energy level \(n = 4\) (from \(4d\) orbital).
Step2: Determine \(l\)
For \(d\) - orbital, \(l = 2\).
Step3: Determine \(m_l\)
The fourth \(d\) - orbital (\(m_l=+1\)).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(4,2,+1,-\frac{1}{2})\)
Electron G
Step1: Determine \(n\)
The principal energy level \(n = 6\) (from \(6s\) orbital).
Step2: Determine \(l\)
For \(s\) - orbital, \(l=0\).
Step3: Determine \(m_l\)
For \(s\) - orbital (\(l = 0\)), \(m_l=0\).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(6,0,0,-\frac{1}{2})\)
Electron J
Step1: Determine \(n\)
The principal energy level \(n = 5\) (from \(5f\) orbital).
Step2: Determine \(l\)
For \(f\) - orbital, \(l = 3\).
Step3: Determine \(m_l\)
The first \(f\) - orbital (\(m_l=-3\)).
Step4: Determine \(m_s\)
The spin is \(+\frac{1}{2}\) (up - arrow).
So, \((n,l,m_l,m_s)=(5,3,-3,+\frac{1}{2})\)
Electron K
Step1: Determine \(n\)
The principal energy level \(n = 5\) (from \(5f\) orbital).
Step2: Determine \(l\)
For \(f\) - orbital, \(l = 3\).
Step3: Determine \(m_l\)
The first \(f\) - orbital (\(m_l=-3\)).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(5,3,-3,-\frac{1}{2})\)
Electron L
Step1: Determine \(n\)
The principal energy level \(n = 6\) (from \(6d\) orbital).
Step2: Determine \(l\)
For \(d\) - orbital, \(l = 2\).
Step3: Determine \(m_l\)
The second \(d\) - orbital (\(m_l=-1\)).
Step4: Determine \(m_s\)
The spin is \(-\frac{1}{2}\) (down - arrow).
So, \((n,l,m_l,m_s)=(6,2,-1,-\frac{1}{2})\)
Electron M
Step1: Determine \(n\)
The principal energy level \(n = 7\) (from \(7p\) orbital).
Step2: De…
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Electron A: \((2,0,0,-\frac{1}{2})\)
Electron B: \((2,1,-1,-\frac{1}{2})\)
Electron C: \((4,0,0,+\frac{1}{2})\)
Electron D: \((3,2,+2,-\frac{1}{2})\)
Electron E: \((4,1,-1,-\frac{1}{2})\)
Electron F: \((4,2,+1,-\frac{1}{2})\)
Electron G: \((6,0,0,-\frac{1}{2})\)
Electron J: \((5,3,-3,+\frac{1}{2})\)
Electron K: \((5,3,-3,-\frac{1}{2})\)
Electron L: \((6,2,-1,-\frac{1}{2})\)
Electron M: \((7,1,0,-\frac{1}{2})\)