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Quantum Physics
Lecture 3: Quantum simulation algorithms
Lecture 3: Mixed states and entangled states 1 The density matrix
Lecture 38
Lecture 37 Relevant sections in text: §5.7 Electric dipole transitions
Lecture 36 Relevant sections in text: §5.7
lecture 36 - waves in 3 dimensions, optical devices
Lecture 36
Lecture 35 Relevant sections in text: §5.6 Fermi’s Golden Rule
Lecture 35
Lecture 34 Relevant sections in text: §5.6 Time-dependent perturbation theory (cont.)
Lecture 33 Relevant sections in text: §5.2, 5.6 Example: Hyperfine structure (cont.)
Lecture 32: Spectroscopy (continued)
Lecture 30 Relevant sections in text: §3.9, 5.1 Bell’s theorem (cont.)
Lecture 3. Fluorescence microscopy I
Lecture 3 Wave Properties Reading: Notes
Lecture 3 The Development of Quantum Mechanics
Lecture 3 Slides
Lecture 3 Polar and non-polar covalent bonds
Lecture 3 Nuclear Data 22.106 Neutron Interactions and Applications Spring 2010
lecture 3
Lecture 3
Lecture 3
Lecture 3
Lecture 2: Techniques for quantum algorithms
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