Quantum Mechanics Full Course


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Quantum Mechanics Full Course

Quantum Mechanics Full Course

Quantum #mechanics (QM; also known as #quantum #physics, quantum theory, the wave mechanical model, or #matrixmechanics), including quantum field theory, is a fundamental theory in physics which describes nature at the smallest scales of energy levels of atoms and subatomic particles. The contents of this #QuantumMechanics course are given below.

Part 1 :

Lesson 1: Fundamentals ⌨️ (10:03) Lesson 2: Complex Numbers in Quantum Mechanics ⌨️ (27:20) Lesson 3: Representing Complex Things ⌨️ (43:03) Lesson4: Superposition and Stationary States ⌨️ (1:0:00) Lesson5: Infinite Square Well ⌨️ (1:19:48) Lesson 6: More ISW + Dirac Notation ⌨️ (1:39:07) Lesson 9: QSHO, Operator Method, part 1 ⌨️ (1:55:37) Lesson 10: QSHO Part 2 ⌨️ (2:18:42) Lesson11 SHO Analytical ⌨️ (2:32:56) Lesson13 Free Particle (redo) ⌨️ (3:00:28) Lesson14 More Fourier Transforms, inner products ⌨️ (3:22:10) Lesson15 Delta Bound States ⌨️ (3:32:50) Lesson16: Scattering States of the Dirac Delta Potential

Part 2 :

⌨️ (0:00) Finite Square Well (updated) ⌨️ (26:25) Tunneling and Bonding ⌨️ (35:18) Review (or intro) to Linear Algebra + Notation ⌨️ (55:47) Formalism I ⌨️ (1:10:28) Formalism II More Quantum Formalism ⌨️ (1:29:29) Formalism III: Time Evolution + More Change of Basis ⌨️ (1:55:56) Exam 3 Prep, More time evolution of Ammonia molecule ⌨️ (2:15:40) SWE in 3D ⌨️ (2:29:42) Hydrogen Solutions + Angular Momentum ⌨️ (3:06:07) Angular Momentum-II ⌨️ (3:26:20) Spin 1/2 ⌨️ (3:43:26) Adding Spins and Entanglement ⌨️ (4:13:27) Quantum Teleportation, No Cloning Theorem ⌨️ (4:41:44) Quantum Computing, Deutsch’s Problem ⌨️ (5:05:35) Worked Example: Infinite Square Well Superposition ⌨️ (5:13:18) Measurement effect on Wavefunction, Fourier Coefficients, Energy ⌨️ (5:19:20) Wavefunction in a numpy array to expectation value ⌨️ (5:22:44) Wave Packet Spreading


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