
Quantum Computing: Basic Concepts
N.B. Singh
This audiobook is narrated by a digital voice.
"Quantum Computing: Basic Concepts" is a beginner-friendly guide that introduces readers to the fascinating world of quantum computing. Written for absolute beginners, this book provides clear explanations of key concepts in quantum computing, such as qubits, superposition, and quantum gates, without assuming any prior knowledge of quantum mechanics or advanced mathematics. Through easy-to-understand language and practical examples, readers will gain a foundational understanding of quantum computing principles and explore the potential applications of this cutting-edge technology. Whether you're a curious novice or a seasoned enthusiast, this book offers an accessible entry point into the captivating realm of quantum computing.
Duration - 10h 43m.
Author - N.B. Singh.
Narrator - Digital Voice Mary G.
Published Date - Monday, 20 January 2025.
Copyright - © 2024 N.B. Singh ©.
Location:
United States
Description:
This audiobook is narrated by a digital voice. "Quantum Computing: Basic Concepts" is a beginner-friendly guide that introduces readers to the fascinating world of quantum computing. Written for absolute beginners, this book provides clear explanations of key concepts in quantum computing, such as qubits, superposition, and quantum gates, without assuming any prior knowledge of quantum mechanics or advanced mathematics. Through easy-to-understand language and practical examples, readers will gain a foundational understanding of quantum computing principles and explore the potential applications of this cutting-edge technology. Whether you're a curious novice or a seasoned enthusiast, this book offers an accessible entry point into the captivating realm of quantum computing. Duration - 10h 43m. Author - N.B. Singh. Narrator - Digital Voice Mary G. Published Date - Monday, 20 January 2025. Copyright - © 2024 N.B. Singh ©.
Language:
English
Preface
Duración:00:01:36
Quantum Mechanics Basics
Duración:00:38:29
Quantum Gates
Duración:00:24:15
Measurement in Quantum Computing
Duración:00:28:50
Quantum Circuits
Duración:00:22:37
Miscellaneous
Duración:00:13:09
Quantum Algorithms
Duración:00:00:03
Grover’s Algorithm
Duración:00:11:04
Shor’s Algorithm
Duración:00:13:38
Variational Algorithms
Duración:00:15:13
Hybrid Classical-Quantum Algorithms
Duración:00:10:37
Quantum Hardware
Duración:00:00:03
Superconducting Qubits
Duración:00:05:56
Trapped Ions
Duración:00:10:10
Topological Qubits
Duración:00:15:25
Photonic Qubits
Duración:00:08:16
Other Quantum Technologies
Duración:00:34:37
Quantum Programming Languages (QPL)
Duración:00:00:04
Introduction
Duración:00:12:59
Imperative QPL
Duración:00:11:45
Functional QPL
Duración:00:09:10
Probabilistic QPL
Duración:00:13:04
Hybrid QPL
Duración:00:12:56
Domain Specific QPL
Duración:00:13:18
QPL Design
Duración:00:08:56
QPL Examples
Duración:00:57:25
Quantum Computing Libraries and Frameworks
Duración:00:08:36
Quantum Error Correction
Duración:00:00:03
Error Models in Quantum Computing
Duración:00:11:45
Quantum Error Correction Techniques
Duración:00:20:07
Quantum Fault Tolerance
Duración:00:10:01
Applications of Quantum Computing
Duración:00:00:04
Cryptography
Duración:00:13:17
Quantum Machine Learning
Duración:00:13:01
Quantum Chemistry
Duración:00:20:53
Optimization
Duración:00:18:07
Other Applications
Duración:00:37:59
Quantum Supremacy
Duración:00:00:03
Quantum Computing Industry
Duración:00:00:03
Leading Companies in Quantum Computing
Duración:00:16:49
Quantum Computing Startups
Duración:00:27:08
Future of Quantum Computing
Duración:00:00:03
Conclusion
Duración:00:00:03