Intro to Quantum Computing
Unlock the power of quantum computing: explore qubits, algorithms, and real-world applications in this introductory course.
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Quantum Computing Fundamentals
Unit 1: Introduction to Quantum Computing
What is Quantum?
Classical vs. Quantum
Quantum Key Concepts
The Power of Qubits
Qubit Visualization
Quantum Gates and Circuits
Unit 1: Single-Qubit Gates
Introduction to Gates
The Pauli-X Gate
The Pauli-Y Gate
The Pauli-Z Gate
Hadamard Gate
Unit 2: Multi-Qubit Gates
Intro to Multi-Qubit
The CNOT Gate
Controlled-Z Gate
SWAP Gate
Toffoli Gate
Unit 3: Quantum Circuit Basics
Building Circuits
Circuit Equivalence
Measurement in Circuits
Creating Entanglement
Running a Circuit
Quantum Algorithms and Applications
Unit 1: Grover's Search Algorithm
Intro to Grover's
Oracle in Grover's
Diffusion Operator
Grover's Iterations
Grover's Algorithm Use
Unit 2: Shor's Factoring Algorithm
Intro to Shor's
Modular Arithmetic
Quantum Fourier Transf.
Continued Fractions
Shor's Algorithm Use
Unit 3: Applications of Quantum Computing
Quantum Chemistry
Quantum Optimization
Quantum Machine Learn
Quantum Simulation
Finance Applications
Unit 4: Quantum Cryptography
Intro to Cryptography
BB84 Protocol
E91 Protocol
Quantum Key Distr.
QKD Security
Quantum Computing Landscape and Future Trends
Unit 1: Types of Quantum Computers
Superconducting Qubits
Trapped Ion Qubits
Photonic Qubits
Neutral Atom Qubits
Topological Qubits
Unit 2: Challenges and Limitations
Decoherence
Qubit Scalability
Error Correction
Control and Calibration
Environmental Isolation
Unit 3: Quantum Computing Landscape and Future Trends
Current Quantum Hardware
Quantum Software
Quantum Cloud Services
Future Applications
Roadmap for Quantum