Structure Exercise Results

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Kcrox
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Last updated: August 25, 2025
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First submittedAugust 25, 2025
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Hint
Answer
1.20 (spin-orbit 3p-3s) H
18.4 T
1.38 (Relativistic Hamiltonian)
formula
1.28 (Black body approx for Sun) dPtot**
1.8e16 erg/s
1.28 (Black body approx for Sun) S-B constant**
5.6e(-5) erg/(K^4*cm^2*s)
1.29 (Black body approx for Sun) T
6.7e3 K
2.5 He ground state-perturbative
-74.8 eV
2.6 He ground state-variational
-77.5 eV
1.30 Na emission thermal shift
1e9 Hz
1.30 Na emission recoil shift
3e4 Hz
1.26 H 2p level halflife
1.6e(-9) s
2.14 He 2s4p wavelength
200 A
2.14 He 2s4p electron velocity
3.6e8 cm/s
2.12 Electron contact interaction orthohelium
0
2.12 Electron contact interaction parahelium**
4e(-3) eV
2.8 H- ground state energy perturbative
-3/4 e^2/(2a0)
2.8 H- ground state energy variational
-0.945 e^2/(2a0)
2.2 Cs spin orbit coupling constant
4.8e(-2) eV
2.2 Cs spin orbit effective field
587 T
2.10 Li electric dipole
3e*a0/Z
3.5 Spectroscopic notation for Fe V Yb As
5D4 3F2 2F7/2 4S3/2
4.2 Thomson model
alpha=R^3
Hint
Answer
4.5 Zeeman splitting
1.67e(-2) A
4.8 He magnetic molar susceptibility constant
-1.6e(-6) cm^3/mol
4.8 He magnetic molar susceptibility energy
1.3e(-22) erg
4.19 Electron couples susceptibility
formula
? Impure diamagnetic material magnetization
2.9e(-2) Gauss
? Impure diamagnetic material specific heat
9e(-2) erg/(K*cm^3)
4.17 Mercury coil magnetic field
8 Gauss
?? Bohr-Sommerfeld->field quantum+Landau levels
formula
5.1 Positronium atom ground state Darwin term
6e(-4) eV
5.1 Positronium atom ground state magnetic field
5 T
5.14 Bismuth state coupling constant
8e(-2) cm^(-1)
5.14 Bismuth state nuclear spin I
9/2
5.17 Barium 6s6p transition intensity
level degeneracy
5.12 Two level system entropy and specific heat
formula
4.4 Li transition
formula
4.14 Halpha transition e/m estimate
5.273 esu/g
4.14 Calcium transition e/m estimate
5.269 esu/g
5.3 H electron magnetic field 1s
29 T
5.3 H electron magnetic field 2s
3.6 T
5.3 H electron magnetic field 3s
1.1 T
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