The Complete Quantum Computing Course With Python [2025]
Published 3/2025
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz
Language: English | Size: 4.01 GB | Duration: 7h 30m
Published 3/2025
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz
Language: English | Size: 4.01 GB | Duration: 7h 30m
Qubit, quantum gates, quantum circuits, quantum mechanics, Deutsch-Jozsa Algorithm, Grover’s Algorithm, quantum oracle
What you'll learn
Qubit
Qubit State
superposition state
quantum gates
quantum circuits
quantum mechanics
multi-qubit state
Wave theory
Qubit interference
Quantum spin
Stern-Gerlach Experiment
Correlated particles
Bell States
Einstein-Podolsky-Rosen Paradox
Hadamard gate
Cirq
Pauli gate
Phase kickback
Eigenstates
Swap gate
Toffoli gate
CNOT gates
Rϕ Gate
Rx and Ry gates
Equal superposition state
Entangled state
bit-flip error
phase flip error
Quantum Error Correction (QEC)
Shor Code
Variational Quantum Circuits
classical oracle
phase oracle
quantum oracle
Quantum phase estimation
Amplitude Amplification
quantum Fourier transform
Grover’s Algorithm
Deutsch-Jozsa Algorithm
Requirements
Basic knowledge of python is required
Description
Master Quantum Computing with Python – From Fundamentals to Advanced AlgorithmsThis course is a comprehensive, hands-on guide to quantum computing, designed for both beginners and professionals. Whether you are a student, researcher, or software developer, this course will take you from the foundational principles of quantum mechanics to implementing real-world quantum algorithms using Python.What You Will LearnQuantum Mechanics Basics – Understanding superposition, entanglement, and quantum interferenceQubits and Quantum Gates – Explore Hadamard, Pauli, CNOT, Toffoli, and rotational gatesQuantum Circuit Design – Build and simulate quantum circuits using Cirq and QiskitQuantum Fourier Transform (QFT) and Grover’s Algorithm – Solve complex problems exponentially fasterQuantum Phase Estimation (QPE) – The foundation for Shor’s Algorithm and quantum cryptographyVariational Quantum Circuits (VQCs) – Hybrid quantum-classical machine learning applicationsQuantum Error Correction (QEC) – Ensuring reliability in quantum computingQuantum Oracles and Amplitude Amplification – Core components for quantum search algorithmsHands-On Projects and ApplicationsSimulating quantum circuits with PythonImplementing Grover’s Search Algorithm for database searchesBuilding and running the Quantum Fourier Transform (QFT)Developing Quantum Phase Estimation (QPE) for real-world applicationsWho Should Take This Course?Python programmers interested in quantum computingComputer science and physics studentsMachine learning and AI professionals exploring Quantum AIDevelopers and researchers looking to transition into quantum computingWhy Learn Quantum Computing?With major companies and research institutions investing in quantum computing, acquiring quantum programming skills will open doors to cutting-edge technologies and future career opportunities.Enroll Today and Begin Your Quantum Computing Journey!
Who wants to learn about quantum computing,Who wants to work in quantum computing,Who has some basic knowledge of python and wants to go beyond