
DNA Computing: Quantum Computing Methods
N.B. Singh
This audiobook is narrated by a digital voice.
"DNA Computing: Quantum Computing Methods" explores the convergence of quantum computing with DNA-based technologies, unveiling how quantum principles amplify the computational capabilities inherent in DNA. This comprehensive work navigates through the transformative potential across healthcare, finance, and beyond, addressing challenges, innovations, and ethical considerations. From advancements in hardware and algorithms to biotechnological integration, this book forecasts a future where quantum DNA computing drives unprecedented scientific and societal advancements."
Duration - 4h 13m.
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. "DNA Computing: Quantum Computing Methods" explores the convergence of quantum computing with DNA-based technologies, unveiling how quantum principles amplify the computational capabilities inherent in DNA. This comprehensive work navigates through the transformative potential across healthcare, finance, and beyond, addressing challenges, innovations, and ethical considerations. From advancements in hardware and algorithms to biotechnological integration, this book forecasts a future where quantum DNA computing drives unprecedented scientific and societal advancements." Duration - 4h 13m. Author - N.B. Singh. Narrator - Digital Voice Mary G. Published Date - Monday, 20 January 2025. Copyright - © 2024 N.B. Singh ©.
Language:
English
Preface
Duración:00:00:34
Introduction to DNA Computing
Duración:00:01:07
Historical Overview
Duración:00:06:10
Basic Principles of DNA Computing
Duración:00:06:04
Advantages and Challenges
Duración:00:06:32
Current State of Research
Duración:00:06:46
Comparative Analysis with Classical Computing
Duración:00:03:31
Future Prospects
Duración:00:04:00
Quantum Computing Fundamentals
Duración:00:01:09
Quantum Mechanics Primer
Duración:00:01:04
Quantum Gates and Circuits
Duración:00:01:16
Quantum Algorithms Overview
Duración:00:09:05
Quantum Computing Models
Duración:00:09:05
Quantum Entanglement and Superposition
Duración:00:06:42
Quantum Error Correction
Duración:00:07:04
Integration of Quantum Mechanics in DNA Computing
Duración:00:01:23
Quantum-inspired DNA Computing Models
Duración:00:07:22
DNA-based Quantum Gates
Duración:00:07:26
Quantum-DNA Hybrid Systems
Duración:00:08:12
Simulation Techniques
Duración:00:07:31
Experimental Implementations
Duración:00:06:45
Computational Complexity Analysis
Duración:00:06:29
Quantum Algorithms for DNA Computing
Duración:00:01:25
Grover’s Algorithm and DNA Computing
Duración:00:04:05
Shor’s Algorithm and Its Variants
Duración:00:03:58
Quantum Walks on DNA Graphs
Duración:00:03:46
Quantum Fourier Transform in DNA Context
Duración:00:03:30
Quantum Simulation Techniques
Duración:00:07:33
Benchmarking Quantum DNA Algorithms
Duración:00:03:58
Applications of Quantum DNA Computing
Duración:00:01:28
Bioinformatics and Genome Analysis
Duración:00:04:21
Drug Design and Molecular Modeling
Duración:00:04:14
Optimization Problems
Duración:00:04:40
Cryptography and Secure Communication
Duración:00:05:23
Data Storage and Retrieval
Duración:00:06:36
Environmental and Biological Applications
Duración:00:08:11
Challenges and Limitations
Duración:00:01:22
Scalability Issues
Duración:00:08:22
Error Rates and Fault Tolerance
Duración:00:07:02
Cost and Infrastructure Requirements
Duración:00:07:14
Biological Constraints
Duración:00:06:51
Ethical and Regulatory Considerations
Duración:00:06:15
Interdisciplinary Collaboration Challenges
Duración:00:05:47
Future Directions and Innovations
Duración:00:01:25
Advances in Quantum Hardware
Duración:00:05:34
Hybrid Computing Approaches
Duración:00:04:45
Novel Quantum Algorithms for DNA Applications
Duración:00:05:17
Biotechnological Innovations
Duración:00:05:02
Integration with Emerging Technologies
Duración:00:05:19
Predictions for Future Quantum DNA Computing
Duración:00:04:58