Course Overview

Our current classical computing technology is based on bits or binary digits 1 and 0. 1 for ON and 0 OFF. Even though it has two states, a bit can exist in only one state at a time. Just like a coin has two faces head and tail. The Quantum computing concept is entirely different from the classical one. It uses the quantum mechanical property of tiny subatomic particles like electrons to perform computation. Instead of 1 and 0, a qubit or quantum bit uses the spin position 'up' and 'down' of electrons. But unlike bits, qubits can exist in both states simultaneously. Like a coin keeps on spinning, we could say it is having an equal probability for both head and tail. Or it is both head and tail at the same time.

The course will begin with a basic introduction to Quantum mechanics, Moving ahead you'll get to know about the difference between Classical bit vs Quantum Qubit. Then, you will learn how to create, retain, and read out Qubits. Further, you will get familiarized with Pauli X-gate. You will also go through some interesting topics such as Multi Qubit States, CNOT Gate, CZ Circuit Identity, CY Circuit Identity, SWAP Circuit Identity, Toffoli Gate, and DJ Algorithm Design. Finally, you will get to know about Quantum Cryptography.

By the end of this course, you will be able to understand general Quantum Computing based on IBM Qiskit documentation.

What You Will Learn

  • Familiarize with general Quantum Computing
  • Understand about General Quantum Computing based on IBM Qiskit Documentation
  • Learn about Practical Quantum Computing Concepts
  • Familiarize with Qubits
  • Familiarize with Quantum Framework

Program Curriculum

  • Introduction to Quantum Mechanics - Part 1
  • Introduction to Quantum Mechanics - Part 2
  • $7 Million Cybersecurity Scholarship by EC-Council
  • Chapter 1 Quiz

  • Classical Bit vs. Quantum Qubit - Part 1
  • Classical Bit vs. Quantum Qubit - Part 2
  • Classical Bit vs. Quantum Qubit - Part 3
  • Classical Bit vs. Quantum Qubit - Part 4
  • Chapter 2 Quiz

  • Creating, Retaining, and Reading Out Qubits - Part 1
  • Creating, Retaining, and Reading Out Qubits - Part 2
  • Chapter 3 Quiz

  • Vector and Matrix Quantum States
  • Chapter 4 Quiz

  • Classic Logic Gates Overview
  • Chapter 5 Quiz

  • Popular Quantum Frameworks
  • Chapter 6 Quiz

  • Installing Anaconda Python Distribution
  • Chapter 7 Quiz

  • Installing and Testing Qiskit
  • Chapter 8 Quiz

  • Pauli X-gate in Qiskit - Part 1
  • Pauli X-gate in Qiskit - Part 2
  • Chapter 9 Quiz

  • Pauli X-gate Input and Output Customizations
  • Chapter 10 Quiz

  • Pauli X-gate in Real IBM Quantum Computer
  • Chapter 11 Quiz

  • Pauli Matrixes as State Vectors
  • Chapter 12 Quiz

  • Pauli Y-gate - Part 1
  • Pauli Y-gate - Part 2
  • Pauli Y-gate - Part 3
  • Chapter 13 Quiz

  • Pauli Z-gate
  • Chapter 14 Quiz

  • Eigen Vectors of XYZ Gates
  • Chapter 15 Quiz

  • Hadamard Gate Introduction
  • Chapter 16 Quiz

  • Hadamard Gate in Qiskit
  • Chapter 17 Quiz

  • Hadamard Gate Exercises- Part 1
  • Hadamard Gate Exercises - Part 2 - X with H and Z
  • Hadamard Gate Exercises - Part 3 - Superposition Collapse

  • H gate in Real Quantum Computer
  • Chapter 19 Quiz

  • R phi Gate
  • Chapter 20 Quiz

  • S and T Gates
  • Chapter 21 Quiz

  • U and I Gates
  • Chapter 22 Quiz

  • Multi Qubit States Introduction
  • Chapter 23 Quiz

  • Representing Multi Qubit States
  • Chapter 24 Quiz

Multi Qubit Circuit using Single Qubit Gates - Sample Circuit 1

Multi Qubit Circuit using Single Qubit Gates - Sample Circuit 2

  • CNOT Gate with Classical Qubits
  • Chapter 27 Quiz

  • CNOT Gate with Control Qubit Superposition
  • Chapter 28 Quiz

  • CNOT Gate with Control Qubit Superposition - In Real Quantum Computer
  • Chapter 29 Quiz

  • CNOT Gate with Both Qubit Superposition
  • Chapter 30 Quiz

CNOT Gate with Both Qubit Superposition Target X

  • CNOT Circuit Identities - Part 1
  • CNOT Circuit Identities - Part 2
  • Chapter 32 Quiz

  • CZ Circuit Identity - Part 1
  • CZ Circuit Identity - Part 2
  • Chapter 33 Quiz

  • CY Circuit Identity
  • Chapter 34 Quiz

  • SWAP Circuit Identity
  • Chapter 35 Quiz

  • Toffoli Gate
  • Chapter 36 Quiz

Toffoli Circuit Identity

  • DJ Problem Overview
  • Chapter 38 Quiz

DJ Algorithm Design

  • DJ Algorithm Implementation - Part 1
  • DJ Algorithm Implementation - Part 2
  • DJ Algorithm Implementation - Part 3

  • Quantum Key Distribution - RSA Concepts
  • Quantum Key Distribution - Concept

Quantum Teleportation Theory

Further Learning and Resources

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Instructor

Abhilash Nelson

Abhilash Nelson is a pioneering, talented and security-oriented Android/iOS Mobile and PHP/Python Web Developer Application Developer offering more than eight years’ overall IT experience which involves designing, implementing, integrating, testing and supporting impact-full web and mobile applications. He is a Postgraduate Master's Degree holder in Computer Science and Engineering and is currently serving full time as a Senior Solution Architect managing my client's projects from start to finish to ensure high quality, innovative and functional design.

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