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Udemy - Quantum Physics from Beginner to Expert (Quantum mechanics)

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Udemy - Quantum Physics from Beginner to Expert (Quantum mechanics) (Size: 3.4 GB)
  001 Hello and welcome.mp4 25.5 MB
  001 Hello and welcome_en.vtt 4.3 KB
  001 Section intro.mp4 13 MB
  001 Section intro_en.vtt 716.8 B
  001 Strange phenomena.mp4 36 MB
  001 Strange phenomena_en.vtt 8.4 KB
  001 Tutorial_ Section intro.mp4 51.1 MB
  001 Tutorial_ Section intro_en.vtt 2.6 KB
  002 Complex numbers 1_4 - What are complex numbers_.mp4 26.3 MB
  002 Complex numbers 1_4 - What are complex numbers__en.vtt 9.7 KB
  002 Interpretations of QM_ Copenhagen, Many-world theory, Bohm mechanics & more.mp4 262.4 MB
  002 Interpretations of QM_ Copenhagen, Many-world theory, Bohm mechanics & more_en.vtt 13.4 KB
  002 Setting up Python 3 (Jupyter notebooks) for scientific programming.mp4 4 MB
  002 Setting up Python 3 (Jupyter notebooks) for scientific programming_en.vtt 819.2 B
  002 Slides for this section.html 0 B
  002 The structure of this course.mp4 68.5 MB
  002 The structure of this course_en.vtt 3.4 KB
  003 Complex numbers 2_4 - Addition, subtraction & complex plane.mp4 37.8 MB
  003 Complex numbers 2_4 - Addition, subtraction & complex plane_en.vtt 12.5 KB
  003 Goodbye_.mp4 17.9 MB
  003 Goodbye__en.vtt 1 KB
  003 Kronecker delta and delta distribution.mp4 11.9 MB
  003 Kronecker delta and delta distribution_en.vtt 4.9 KB
  003 Mathematical Tutorial.html 819.2 B
  003 Motivating the Schrodinger equation_en.vtt 5.9 KB
  003 Motivating the Schrödinger equation.mp4 26.6 MB
  003 Python_ Particle in a box, part 1.mp4 33.6 MB
  003 Python_ Particle in a box, part 1_en.vtt 10.7 KB
  003 Qubits.mp4 41.1 MB
  003 Qubits_en.vtt 13.6 KB
  003 Reminder about our first exercise.html 819.2 B
  003 Separation of the problem.mp4 37.7 MB
  003 Separation of the problem_en.vtt 10.5 KB
  003 Special relativity.mp4 37.3 MB
  003 Special relativity_en.vtt 9.5 KB
  003 The harmonic oscillator.mp4 24.9 MB
  003 The harmonic oscillator_en.vtt 9.4 KB
  003 What is light_ A wave_.mp4 79.7 MB
  003 What is light_ A wave__en.vtt 16.5 KB
  004 Complex numbers 3_4 - Multiplication & division.mp4 27.2 MB
  004 Complex numbers 3_4 - Multiplication & division_en.vtt 9.1 KB
  004 Different representations of wave functions and operators.mp4 25 MB
  004 Different representations of wave functions and operators_en.vtt 8.9 KB
  004 Discussion & Interpretation of the Schrodinger equation and wave functions_en.vtt 9.5 KB
  004 Discussion & Interpretation of the Schrödinger equation and wave functions.mp4 43.9 MB
  004 Exercise_ Preparation for ladder operators.html 409.6 B
  004 Python_ Particle in a box, part 2.mp4 90.8 MB
  004 Python_ Particle in a box, part 2_en.vtt 22 KB
  004 Relativistic energy dispersion.mp4 11 MB
  004 Relativistic energy dispersion_en.vtt 4.3 KB
  004 Single-bit operations for quantum computing.mp4 15.2 MB
  004 Single-bit operations for quantum computing_en.vtt 4.9 KB
  004 Solving the angular equations.mp4 45.5 MB
  004 Solving the angular equations_en.vtt 12.6 KB
  004 The stationary Schrodinger equation_en.vtt 5.8 KB
  004 The stationary Schrödinger equation.mp4 29.7 MB
  004 What is light_ A particle_.mp4 27.3 MB
  004 What is light_ A particle__en.vtt 8.7 KB
  005 Analytical example_ Particle in a box, part 1.mp4 31.4 MB
  005 Analytical example_ Particle in a box, part 1_en.vtt 10.4 KB
  005 Complex numbers 4_4 - Exponentials & polar representation.mp4 77.9 MB
  005 Complex numbers 4_4 - Exponentials & polar representation_en.vtt 20 KB
  005 Dirac notation or Bra-Ket notation.mp4 21.6 MB
  005 Dirac notation or Bra-Ket notation_en.vtt 7.3 KB
  005 Double-bit operations for quantum computing.mp4 9 MB
  005 Double-bit operations for quantum computing_en.vtt 2.5 KB
  005 Klein-Gordon equation.mp4 23.3 MB
  005 Klein-Gordon equation_en.vtt 8 KB
  005 Operators & Expectation values.mp4 27.4 MB
  005 Operators & Expectation values_en.vtt 6.5 KB
  005 Particle-wave dualism.mp4 16.8 MB
  005 Particle-wave dualism_en.vtt 4.7 KB
  005 Python_ Harmonic oscillator, part 1.mp4 33.5 MB
  005 Python_ Harmonic oscillator, part 1_en.vtt 9.8 KB
  005 Second quantization.mp4 24.4 MB
  005 Second quantization_en.vtt 6.8 KB
  005 Solving the radial equation.mp4 78.6 MB
  005 Solving the radial equation_en.vtt 24.6 KB
  006 Analytical example_ Particle in a box, part 2.mp4 37.3 MB
  006 Analytical example_ Particle in a box, part 2_en.vtt 11.1 KB
  006 Exercise_ Complex numbers.html 307.2 B
  006 Heisenberg's uncertainty & Schrodinger's cat_en.vtt 6.3 KB
  006 Heisenberg's uncertainty & Schrödinger's cat.mp4 24 MB
  006 Hermitian operators.mp4 25.9 MB
  006 Hermitian operators_en.vtt 9.6 KB
  006 Ladder operators.mp4 30 MB
  006 Ladder operators_en.vtt 9.4 KB
  006 Muonic hydrogen.mp4 56.4 MB
  006 Muonic hydrogen_en.vtt 17.3 KB
  006 Physical realization of single-qubit operations.mp4 48.1 MB
  006 Physical realization of single-qubit operations_en.vtt 14.6 KB
  006 Python_ Harmonic oscillator, part 2.mp4 93.6 MB
  006 Python_ Harmonic oscillator, part 2_en.vtt 18.6 KB
  006 Quantum chemistry_ Discussing the eigensystem of the hydrogen atom.mp4 92.7 MB
  006 Quantum chemistry_ Discussing the eigensystem of the hydrogen atom_en.vtt 23.3 KB
  006 Section summary.mp4 27.8 MB
  006 Section summary_en.vtt 3.4 KB
  007 Analytical example_ Particle in a box, part 3.mp4 15.9 MB
  007 Analytical example_ Particle in a box, part 3_en.vtt 5.2 KB
  007 Eigenspectrum of the harmonic oscillator.mp4 40.2 MB
  007 Eigenspectrum of the harmonic oscillator_en.vtt 13.2 KB
  007 Exercise_ Preparation for Commutators.html 512 B
  007 Exercise_ Your first exercise.mp4 20.1 MB
  007 Exercise_ Your first exercise_en.vtt 5.8 KB
  007 Pauli equation & Electron spin.mp4 62.9 MB
  007 Pauli equation & Electron spin_en.vtt 22.8 KB
  007 Physical realization of double-qubit operations.mp4 22.6 MB
  007 Physical realization of double-qubit operations_en.vtt 6.9 KB
  007 Section outro.mp4 28.3 MB
  007 Section outro_en.vtt 1.4 KB
  007 Solutions_ Complex numbers.mp4 51.3 MB
  007 Solutions_ Complex numbers_en.vtt 14.2 KB
  007 The easy way_ Mathematica.mp4 18.1 MB
  007 The easy way_ Mathematica_en.vtt 3.8 KB
  008 Commutators.mp4 14.6 MB
  008 Commutators_en.vtt 5.8 KB
  008 Dirac equation.mp4 21.1 MB
  008 Dirac equation_en.vtt 6.5 KB
  008 Entanglement & Quantum teleportation.mp4 16.1 MB
  008 Entanglement & Quantum teleportation_en.vtt 5.8 KB
  008 Exercise_ Your first exercise.html 307.2 B
  008 Finite potential box.mp4 45.8 MB
  008 Finite potential box_en.vtt 12.9 KB
  008 Section outro.mp4 12.7 MB
  008 Section outro_en.vtt 614.4 B
  008 Tutorial_ Multidimensional derivatives 1_2 - Partial derivatives.mp4 56.8 MB
  008 Tutorial_ Multidimensional derivatives 1_2 - Partial derivatives_en.vtt 14.5 KB
  009 Deriving the Pauli equation from the Dirac equation.mp4 42.8 MB
  009 Deriving the Pauli equation from the Dirac equation_en.vtt 14.6 KB
  009 Estimating the eigensystem of general potentials.mp4 33.8 MB
  009 Estimating the eigensystem of general potentials_en.vtt 10.6 KB
  009 Heisenberg's uncertainty II.mp4 26.8 MB
  009 Heisenberg's uncertainty II_en.vtt 10.3 KB
  009 Multidimensional derivatives 2_2 - Nabla operator.mp4 98.4 MB
  009 Multidimensional derivatives 2_2 - Nabla operator_en.vtt 27.1 KB
  009 Section outro.mp4 17.8 MB
  009 Section outro_en.vtt 921.6 B
  009 Solutions_ Your first exercise.mp4 102 MB
  009 Solutions_ Your first exercise_en.vtt 18.4 KB
  010 1_c^2 corrections.mp4 11.8 MB
  010 1_c^2 corrections_en.vtt 4.9 KB
  010 Common eigenfunctions of commuting operators.mp4 5.5 MB
  010 Common eigenfunctions of commuting operators_en.vtt 2.3 KB
  010 Exercise_ 3-dimensional derivatives.html 307.2 B
  010 Exercise_ Particle in a ring.mp4 51.3 MB
  010 Exercise_ Particle in a ring_en.vtt 7.3 KB
  010 Outlook after the exercise.html 409.6 B
  011 Exercise_ Particle in a ring.html 307.2 B
  011 Fine structure of hydrogen.mp4 15.8 MB
  011 Fine structure of hydrogen_en.vtt 5.8 KB
  011 Solutions_ 3-dimensional derivatives.mp4 54.1 MB
  011 Solutions_ 3-dimensional derivatives_en.vtt 14.3 KB
  011 Time evolution & Ehrenfest theorem.mp4 31.1 MB
  011 Time evolution & Ehrenfest theorem_en.vtt 10.8 KB
  012 Multidimensional integrals.mp4 62.3 MB
  012 Multidimensional integrals_en.vtt 19.5 KB
  012 Section outro.mp4 12.9 MB
  012 Section outro_en.vtt 716.8 B
  012 Solutions_ Particle in a ring.mp4 118.8 MB
  012 Solutions_ Particle in a ring_en.vtt 24.1 KB
  013 Alternative coordinate systems.mp4 55.5 MB
  013 Alternative coordinate systems_en.vtt 15.1 KB
  013 Transition from our exercise to plane waves.html 614.4 B
  014 Integration in spherical coordinates.mp4 52 MB
  014 Integration in spherical coordinates_en.vtt 16.6 KB
  014 Wave packets.mp4 30.3 MB
  014 Wave packets_en.vtt 9.3 KB
  015 Application_ The tunnel effect, part 1.mp4 21.6 MB
  015 Application_ The tunnel effect, part 1_en.vtt 7.6 KB
  016 Application_ The tunnel effect, part 2.mp4 21 MB
  016 Application_ The tunnel effect, part 2_en.vtt 6.6 KB
  017 Section outro.mp4 16.4 MB
  017 Section outro_en.vtt 819.2 B
  32051128-01-Why-do-we-need-quantum-mechanics.pdf 765.5 KB
  32051218-02-The-Schroedinger-equation.pdf 1.6 MB
  32051282-03-Solving-stationary-examples.pdf 2.7 MB
  32051330-04-More-theoretical-background.pdf 2.1 MB
  32051384-05-Second-quantization-Harmonic-oscillator.pdf 1.4 MB
  32051436-06-Hydrogen-atom.pdf 2.8 MB
  32051514-07-Relativistic-quantum-theory-Electron-spin.pdf 3.3 MB
  32051542-08-Quantum-computing.pdf 1.5 MB
  34490738-Nabla.png 220.6 KB
  34490746-Complex-numbers.png 274.5 KB
  34490786-First-example.png 356.5 KB
  34490820-Particle-in-a-ring.png 425.2 KB
  34490856-Commutators.png 126.6 KB
  34490878-Ladder-operators.png 89.7 KB
  Bonus Resources.txt 307.2 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 218 total files

Description


Quantum Physics from Beginner to Expert (Quantum mechanics)
https://CourseBoat.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 3.37 GB | Duration: 12h 56m
From the very fundamentals to advanced topics like quantum computing
What you'll learn
The basics: Experiments that motivated quantum mechanics as well as the theoretical concepts behind it.
Solving the Schrödinger equation: Doing this together step-by-step, teaches you more than 1000 oversimplified videos.
Advanced topics beyond university courses: Quantum computing and relativistic quantum mechanics.
Requirements
Basics about derivatives and integrals (College level)
For everything else there will be a whole mathematical tutorial section (optional)
Description
This course is for everyone: beginner to expert!

We will cover the whole band width of quantum mechanics starting from the initial experimental observations and ending up with relativistic quantum theory.

Quantum mechanics is arguably among the most fascinating fields of science.

It has made numerous appearances in modern pop-culture and is present in our everyday lives. Still, it is also very challenging to get a grasp at this topic - even understanding the most fundamental concepts can be very difficult without instructions.

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