Udemy - QC101 Quantum Computing and Quantum Physics for Beginners

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Udemy - QC101 Quantum Computing and Quantum Physics for Beginners (Size: 1.3 GB)
  001 Analysis of Experiments 1.mp4 21.4 MB
  001 Analysis of Experiments 1_en.vtt 6.2 KB
  001 Analyzing Multi-Qubit Systems.mp4 10.6 MB
  001 Analyzing Multi-Qubit Systems_en.vtt 2.6 KB
  001 Entanglement.mp4 19.3 MB
  001 Entanglement_en.vtt 5 KB
  001 Extract from QC151 on Photon Polarization.html 512 B
  001 IBM Quantum - Note.html 204.8 B
  001 Introduction to Spin States.mp4 4.9 MB
  001 Introduction to Spin States_en.vtt 1.2 KB
  001 Introduction.mp4 59.9 MB
  001 Introduction_en.vtt 3.7 KB
  001 Irreversible Transformations Measurement.mp4 8.1 MB
  001 Irreversible Transformations Measurement_en.vtt 2.1 KB
  001 Math Foundation.html 512 B
  001 Modeling Physics with Math.mp4 2.9 MB
  001 Modeling Physics with Math_en.vtt 1.2 KB
  001 Photons.mp4 44.6 MB
  001 Photons_en.vtt 2.7 KB
  001 Q#, Qiskit, or Cirq.html 1.2 KB
  001 Quantum Circuits.mp4 14.9 MB
  001 Quantum Circuits_en.vtt 4.1 KB
  001 Resources - Slides.html 204.8 B
  001 Speedup Revisited.mp4 7.6 MB
  001 Speedup Revisited_en.vtt 1.8 KB
  002 Analysis of Experiments 2.mp4 3.3 MB
  002 Analysis of Experiments 2_en.vtt 921.6 B
  002 Basis.mp4 9.4 MB
  002 Basis_en.vtt 2.5 KB
  002 Conclusion.mp4 6.8 MB
  002 Conclusion_en.vtt 1.9 KB
  002 Fanout.mp4 7.2 MB
  002 Fanout_en.vtt 1.7 KB
  002 How is Quantum Computing Different.mp4 37.2 MB
  002 How is Quantum Computing Different_en.vtt 2.1 KB
  002 IBM Quantum Experience.mp4 10.9 MB
  002 IBM Quantum Experience_en.vtt 1.6 KB
  002 Installing Q#.mp4 7.9 MB
  002 Installing Q#_en.vtt 2.7 KB
  002 More Quantum Physics.html 2.5 KB
  002 Probability.mp4 7.2 MB
  002 Probability_en.vtt 1.8 KB
  002 Quantum Physics Through Photon Polarization 1.mp4 9.6 MB
  002 Quantum Physics Through Photon Polarization 1_en.vtt 2.1 KB
  002 Reversible State Transformations.mp4 12.4 MB
  002 Reversible State Transformations_en.vtt 3 KB
  002 Reviewing Your Experience.html 716.8 B
  002 Subtractive Probabilities Through Complex Numbers.mp4 9.8 MB
  002 Subtractive Probabilities Through Complex Numbers_en.vtt 2.8 KB
  003 Analysis of Experiments 3.mp4 8.9 MB
  003 Analysis of Experiments 3_en.vtt 2.1 KB
  003 Column Matrix Representation of Quantum State.mp4 10.5 MB
  003 Column Matrix Representation of Quantum State_en.vtt 3.1 KB
  003 Complex Numbers 1.mp4 10 MB
  003 Complex Numbers 1_en.vtt 2.7 KB
  003 Modeling Superposition Through Matrices.mp4 4 MB
  003 Modeling Superposition Through Matrices_en.vtt 921.6 B
  003 Photon Polarization.mp4 77 MB
  003 Photon Polarization_en.vtt 5.1 KB
  003 Quantum Physics Through Photon Polarization 2.mp4 22.8 MB
  003 Quantum Physics Through Photon Polarization 2_en.vtt 7.5 KB
  003 Reminder.html 307.2 B
  003 Review Your Experience.html 614.4 B
  003 Uncomputing.mp4 4.7 MB
  003 Uncomputing_en.vtt 1.3 KB
  004 Complex Numbers 2.mp4 18.5 MB
  004 Complex Numbers 2_en.vtt 3.7 KB
  004 Dirac Bra-Ket Notation 1.mp4 7.6 MB
  004 Dirac Bra-Ket Notation 1_en.vtt 1.8 KB
  004 Going Deeper into Quantum Physics.html 1 KB
  004 Overview of Math Model.mp4 2.7 MB
  004 Overview of Math Model_en.vtt 819.2 B
  004 Q# Simulation Architecture.mp4 2.5 MB
  004 Q# Simulation Architecture_en.vtt 1.3 KB
  004 Quantum Physics Through Photon Polarization 3.mp4 15.1 MB
  004 Quantum Physics Through Photon Polarization 3_en.vtt 2.5 KB
  004 Reversible Gates.mp4 10.1 MB
  004 Reversible Gates_en.vtt 2.7 KB
  004 State Vector.mp4 9.8 MB
  004 State Vector_en.vtt 2.6 KB
  005 Complex Numbers 3.mp4 12.6 MB
  005 Complex Numbers 3_en.vtt 2.7 KB
  005 Dirac Bra-Ket Notation 2.mp4 5.7 MB
  005 Dirac Bra-Ket Notation 2_en.vtt 1.1 KB
  005 Experiments with Photon Polarization.mp4 64.2 MB
  005 Experiments with Photon Polarization_en.vtt 3.9 KB
  005 Experiments with Spin 1.mp4 7.2 MB
  005 Experiments with Spin 1_en.vtt 1.8 KB
  005 Q# Controller.mp4 4.5 MB
  005 Q# Controller_en.vtt 1.2 KB
  005 Quantum NOT.mp4 8.6 MB
  005 Quantum NOT_en.vtt 2.1 KB
  005 Quantum Physics Through Photon Polarization 4.mp4 9.2 MB
  005 Quantum Physics Through Photon Polarization 4_en.vtt 3.6 KB
  006 Experiments with Spin 2.mp4 15.4 MB
  006 Experiments with Spin 2_en.vtt 4.5 KB
  006 Matrix Algebra ( Linear Algebra ).mp4 12.6 MB
  006 Matrix Algebra ( Linear Algebra )_en.vtt 3.1 KB
  006 More Experiment Analysis 1.mp4 5.9 MB
  006 More Experiment Analysis 1_en.vtt 1.5 KB
  006 No-Cloning Theorem.mp4 25.4 MB
  006 No-Cloning Theorem_en.vtt 1.6 KB
  006 Other Single Qubit Gates.mp4 7.7 MB
  006 Other Single Qubit Gates_en.vtt 1.8 KB
  006 Q# Execution Model.mp4 8.4 MB
  006 Q# Execution Model_en.vtt 2.2 KB
  006 Quantum Physics Through Photon Polarization 5.mp4 9.8 MB
  006 Quantum Physics Through Photon Polarization 5_en.vtt 2.7 KB
  007 CNOT Gate.mp4 10.2 MB
  007 CNOT Gate_en.vtt 2.2 KB
  007 Encoding with XOR.mp4 44.9 MB
  007 Encoding with XOR_en.vtt 2.8 KB
  007 Experiments with Spin 3.mp4 7.5 MB
  007 Experiments with Spin 3_en.vtt 2.2 KB
  007 Matrix Multiplication 1.mp4 5.8 MB
  007 Matrix Multiplication 1_en.vtt 1.6 KB
  007 Measuring Superposition States.mp4 17.4 MB
  007 Measuring Superposition States_en.vtt 4.6 KB
  007 More Experiment Analysis 2.mp4 21.7 MB
  007 More Experiment Analysis 2_en.vtt 5.6 KB
  007 Quantum Physics Through Photon Polarization 6.mp4 6.8 MB
  007 Quantum Physics Through Photon Polarization 6_en.vtt 1.5 KB
  008 CCNOT Toffoli Gate.mp4 9.3 MB
  008 CCNOT Toffoli Gate_en.vtt 2.9 KB
  008 Encryption with Single-Use Shared-Secrets.mp4 32.2 MB
  008 Encryption with Single-Use Shared-Secrets_en.vtt 1.9 KB
  008 Matrix Multiplication 2.mp4 8.1 MB
  008 Matrix Multiplication 2_en.vtt 1.9 KB
  008 On Random Behavior.mp4 12.2 MB
  008 On Random Behavior_en.vtt 3.5 KB
  008 Overview of 4-Qubit Simulation Framework.mp4 2.3 MB
  008 Overview of 4-Qubit Simulation Framework_en.vtt 512 B
  008 Quantum Physics Through Photon Polarization 7.mp4 13.8 MB
  008 Quantum Physics Through Photon Polarization 7_en.vtt 3.9 KB
  009 Encoding Data in Photon Polarization.mp4 90.7 MB
  009 Encoding Data in Photon Polarization_en.vtt 5.9 KB
  009 Identity Matrices.mp4 5 MB
  009 Identity Matrices_en.vtt 1.1 KB
  009 Quantum Physics Through Photon Polarization 8.mp4 7.6 MB
  009 Quantum Physics Through Photon Polarization 8_en.vtt 1.7 KB
  009 Set Operation.mp4 7.6 MB
  009 Set Operation_en.vtt 1.5 KB
  009 Universal Gate.mp4 6.4 MB
  009 Universal Gate_en.vtt 1.5 KB
  010 Column Matrices.mp4 7.9 MB
  010 Column Matrices_en.vtt 2.2 KB
  010 Fredkin Gate.mp4 2.2 MB
  010 Fredkin Gate_en.vtt 614.4 B
  010 Iterative Measurement.mp4 18.7 MB
  010 Iterative Measurement_en.vtt 2.8 KB
  010 Making the Protocol Secure.mp4 81.8 MB
  010 Making the Protocol Secure_en.vtt 5.7 KB
  010 Quantum Physics Through Photon Polarization 9.mp4 5.4 MB
  010 Quantum Physics Through Photon Polarization 9_en.vtt 1.6 KB
  011 1x1 Matrices.mp4 3.5 MB
  011 1x1 Matrices_en.vtt 921.6 B
  011 Effects of Superposition and Entanglement on Quantum Gates.mp4 8.8 MB
  011 Effects of Superposition and Entanglement on Quantum Gates_en.vtt 1.9 KB
  011 Exchanging Polarization Angles.mp4 32.5 MB
  011 Exchanging Polarization Angles_en.vtt 2 KB
  011 Quantum Physics Through Photon Polarization 10.mp4 16.7 MB
  011 Quantum Physics Through Photon Polarization 10_en.vtt 4.6 KB
  011 Verifying Output after Initialization - 1.mp4 11 MB
  011 Verifying Output after Initialization - 1_en.vtt 1.9 KB
  012 Logic Circuits.mp4 9.3 MB
  012 Logic Circuits_en.vtt 2.3 KB
  012 Quantum Physics Through Photon Polarization 11.mp4 9.5 MB
  012 Quantum Physics Through Photon Polarization 11_en.vtt 2 KB
  012 Verifying Output after Initialization - 2.mp4 4.1 MB
  012 Verifying Output after Initialization - 2_en.vtt 1.8 KB
  012 Why is the BB84 protocol secure.mp4 24.7 MB
  012 Why is the BB84 protocol secure_en.vtt 1.7 KB
  013 Analysis.mp4 20.4 MB
  013 Analysis_en.vtt 1.2 KB
  013 NOT Operation.mp4 3.7 MB
  013 NOT Operation_en.vtt 1.4 KB
  013 Quantum Physics Through Photon Polarization 12.mp4 17.2 MB
  013 Quantum Physics Through Photon Polarization 12_en.vtt 5.9 KB
  014 Quantum Physics Through Photon Polarization 13.mp4 4.8 MB
  014 Quantum Physics Through Photon Polarization 13_en.vtt 1.6 KB
  014 Superposition.mp4 5.7 MB
  014 Superposition_en.vtt 1.3 KB
  015 Quantum Physics Through Photon Polarization 14.mp4 2.2 MB
  015 Quantum Physics Through Photon Polarization 14_en.vtt 819.2 B
  015 SWAP.mp4 3.3 MB
  015 SWAP_en.vtt 1.1 KB
  016 CNOT.mp4 2.7 MB
  016 CNOT_en.vtt 819.2 B
  017 Significance of Superposition and Entanglement.mp4 4.1 MB
  017 Significance of Superposition and Entanglement_en.vtt 1 KB
  018 Effect of Superposition on Quantum Gates.mp4 6.3 MB
  018 Effect of Superposition on Quantum Gates_en.vtt 1.8 KB
  019 Toffoli Gate General Configuration.mp4 2.9 MB
  019 Toffoli Gate General Configuration_en.vtt 1 KB
  020 Verifying Results.html 409.6 B
  021 Toffoli Configured as NOT.mp4 3 MB
  021 Toffoli Configured as NOT_en.vtt 819.2 B
  022 Toffoli Configured as AND.mp4 2.3 MB
  022 Toffoli Configured as AND_en.vtt 512 B
  023 Toffoli Configured as Fanout.mp4 6.4 MB
  023 Toffoli Configured as Fanout_en.vtt 1 KB
  024 Programming Quantum Computers.html 1.2 KB
  Bonus Resources.txt 409.6 B
  Get Bonus Downloads Here.url 204.8 B
  QB4.qs 5.5 KB
  qc101project.csproj 204.8 B
  run.bat 0 B
  slide0.png 20.1 KB
  slide1.png 25.3 KB
  slide10.png 35.8 KB
  slide1a.png 22.9 KB
  slide1b.png 40.9 KB
  slide1c.png 21.4 KB
  slide2.png 12.7 KB
  slide3.png 26.8 KB
  slide4.png 52.4 KB
  slide5.png 44.5 KB
  slide6.png 47.8 KB
  slide7.png 29.7 KB
  slide8.png 37.4 KB
  slide9.png 37.1 KB
  ▲ 221 total files

Description


QC101 Quantum Computing & Quantum Physics for Beginners
https://DevCourseWeb.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 1.32 GB | Duration: 3h 34m

Master Quantum Computers, Quantum Cryptography, and Quantum Physics with Microsoft Q# (Q Sharp) & IBM Quantum Experience

What you'll learn
Use quantum cryptography to communicate securely
Develop, simulate, and debug quantum programs on Microsoft Q#
Run quantum programs on a real quantum computer through IBM Quantum Experience
Use Dirac's notation and quantum physics models to analyze quantum circuits

Requirements
12th grade level high-school Math and Physics
You must have studied Math and Physics upt o 12th grade level and *enjoyed* it. Quantum Computing is primarily about Math & Physics. There is very little coding involved.
12th grade level, high school Math: Complex numbers, linear algebra, probability, statistics, & boolean logic
Description
Welcome to the bestselling quantum computing course on Udemy!

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