Thermodynamics, Statistical Physics, and Quantum Mechanics

(Axel Boer) #1

xxii Contents


4.100.
4.101.
4.102.
4.103.
4.104.
4.105.
4.106.

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241

Two-Dimensional Debye Solid (Columbia, Boston)
Einstein Specific Heat (Maryland, Boston)
Gas Adsorption (Princeton, MIT, Stanford)
Thermionic Emission (Boston)
Electrons and Holes (Boston, Moscow Phys-Tech)
Adiabatic Demagnetization (Maryland)
Critical Field in Superconductor (Stony Brook, Chicago)

Quantum Mechanics
One-Dimensional Potentials
5.1.
5.2.
5.3.
5.4.
5.5.
5.6.

5.9.
5.10.
5.11.
5.12.
5.13.

Shallow Square Well I (Columbia)
Shallow Square Well II (Stony Brook)
Attractive Delta Function Potential I (Stony Brook)
Attractive Delta Function Potential II (Stony Brook)
Two Delta Function Potentials (Rutgers)
Transmission Through a Delta Function Potential
(Michigan State, MIT, Princeton)
Delta Function in a Box (MIT)
Particle in Expanding Box (Michigan State, MIT, Stony
Br0ook)
One-Dimensional Coulomb Potential (Princeton)
Two Electrons in a Box (MIT)
Square Well (MIT)
Given the Eigenfunction (Boston, MIT)
Combined Potential (Tennessee)
Harmonic Oscillator
5.14.
5.15.
5.16.
5.17.
5.18.

5.19.
5.20.
5.21.

Given a Gaussian (MIT)
Harmonic Oscillator ABCs (Stony Brook)
Number States (Stony Brook)
Coupled Oscillators (MIT)
Time-Dependent Harmonic Oscillator I
(Wisconsin-Madison)
Time-Dependent Harmonic Oscillator II(Michigan State)
Switched-on Field (MIT)
Cut the Spring! (MIT)

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Angular Momentum and Spin
5.22.
5.23.
5.24.
5.25.
5.26.

Given Another Eigenfunction(Stony Brook)
Algebra of Angular Momentum (Stony Brook)
Triplet Square Well (Stony Brook)
Dipolar Interactions (Stony Brook)
Spin-Dependent Potential(MIT)





5.7.
5.8.
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