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Quantum Entanglements: Part 1
Course Description
This Stanford Continuing Studies course is the first of a three-quarter sequence of classes exploring "quantum entanglements" in modern theoretical physics. The course is taught by Leonard Susskind, the Felix Bloch Professor of Physics at Stanford University.

Prof. Leonard Susskind in Lecture 9.
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Video Lectures & Study Materials
# | Lecture | Play Lecture |
---|---|---|
1 | Weirdness of Quantum Mechanics (01:35:35) | Play Video |
2 | Basics of Quantum Mechanics (01:48:39) | Play Video |
3 | Complex Numbers (01:46:54) | Play Video |
4 | Lecture 4 (01:54:07) | Play Video |
5 | Entangled States (01:44:59) | Play Video |
6 | Projection Operators and Subspaces (01:59:13) | Play Video |
7 | Double-Slit Experiment (01:44:56) | Play Video |
8 | Density Matrix and Probability (01:47:43) | Play Video |
9 | Lecture 9 (01:37:01) | Play Video |
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Topics
- Classical bits, configuration space, time evolution
- Linear algebra review, vector representation of
configuration, matrix representation of operations and time
evolution, matrix computation
Topics
- Classical bits, configuration space, time evolution
- Linear algebra review, vector representation of
configuration, matrix representation of operations and time
evolution, matrix computation
Comparing classical picture of electron spin with quantum
one.
Describing vector and vector space, concept with is used to
formulate quantum mechanics.
Describing classical physics using the idea of classic
bits.