Quantum Data Structures Fundamentals

Quantum Data Structures Fundamentals

Author: N.B. Singh

Publisher: N.B. Singh

Published:

Total Pages: 472

ISBN-13:

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"Quantum Data Structures Fundamentals" is a beginner-friendly exploration of the essential concepts underpinning quantum computing. Written for readers with non-mathematical backgrounds and absolute beginners, this book delves into the fundamental principles of quantum data structures, offering clear explanations and intuitive insights. From understanding the basics of qubits and quantum gates to exploring advanced topics such as quantum cryptography and quantum simulation, each chapter provides a comprehensive overview of key concepts in a reader-friendly manner. Through accessible language and practical examples, this book serves as an introductory guide to the fascinating world of quantum computing, empowering readers to grasp foundational concepts and lay the groundwork for further exploration in this rapidly evolving field.


Book Synopsis Quantum Data Structures Fundamentals by : N.B. Singh

Download or read book Quantum Data Structures Fundamentals written by N.B. Singh and published by N.B. Singh. This book was released on with total page 472 pages. Available in PDF, EPUB and Kindle. Book excerpt: "Quantum Data Structures Fundamentals" is a beginner-friendly exploration of the essential concepts underpinning quantum computing. Written for readers with non-mathematical backgrounds and absolute beginners, this book delves into the fundamental principles of quantum data structures, offering clear explanations and intuitive insights. From understanding the basics of qubits and quantum gates to exploring advanced topics such as quantum cryptography and quantum simulation, each chapter provides a comprehensive overview of key concepts in a reader-friendly manner. Through accessible language and practical examples, this book serves as an introductory guide to the fascinating world of quantum computing, empowering readers to grasp foundational concepts and lay the groundwork for further exploration in this rapidly evolving field.


Fundamentals of Quantum Data Structures

Fundamentals of Quantum Data Structures

Author: N.B. Singh

Publisher: N.B. Singh

Published: 426-01-01

Total Pages: 428

ISBN-13:

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"Fundamentals of Quantum Data Structures" is a comprehensive guide that introduces the core concepts and principles underlying the marriage of quantum computing and data structures. Tailored for students, researchers, and professionals in the field of quantum computing, this book navigates through the essential foundations of quantum information processing, offering insights into quantum bits (qubits), quantum gates, and quantum algorithms. With clear explanations and practical examples, the book serves as an invaluable resource for those looking to grasp the fundamentals of organizing and manipulating data in the unique context of quantum computing.


Book Synopsis Fundamentals of Quantum Data Structures by : N.B. Singh

Download or read book Fundamentals of Quantum Data Structures written by N.B. Singh and published by N.B. Singh. This book was released on 426-01-01 with total page 428 pages. Available in PDF, EPUB and Kindle. Book excerpt: "Fundamentals of Quantum Data Structures" is a comprehensive guide that introduces the core concepts and principles underlying the marriage of quantum computing and data structures. Tailored for students, researchers, and professionals in the field of quantum computing, this book navigates through the essential foundations of quantum information processing, offering insights into quantum bits (qubits), quantum gates, and quantum algorithms. With clear explanations and practical examples, the book serves as an invaluable resource for those looking to grasp the fundamentals of organizing and manipulating data in the unique context of quantum computing.


Exploring Quantum Data Structures

Exploring Quantum Data Structures

Author: N B Singh

Publisher: Independently Published

Published: 2023-06-25

Total Pages: 0

ISBN-13:

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"Exploring Quantum Data Structures: From Basics to Advanced Concepts" is a comprehensive book that delves into the fascinating world of quantum data structures. It provides a comprehensive introduction to the fundamental principles, theories, and applications of quantum data structures, covering both the basic concepts and advanced techniques. The book begins with an overview of quantum computing and the underlying principles of quantum mechanics, ensuring a solid foundation for understanding quantum data structures. It then progresses to explore various key topics, including quantum algorithms, quantum data representation, quantum data manipulation, and quantum data analysis. The first part of the book focuses on the basics of quantum data structures. It introduces the concept of qubits, quantum gates, and quantum circuits, providing clear explanations and examples of how these elements are used to build and manipulate quantum data structures. The chapter on quantum state representation covers topics such as superposition, entanglement, and measurement, providing insights into the unique properties of quantum data. The book then delves into advanced concepts and techniques in quantum data structures. It covers topics such as quantum data encoding, quantum data fusion, quantum data privacy, and quantum data integration. Each topic is explored in detail, with a focus on both theoretical aspects and practical applications. The book also discusses the challenges and limitations of quantum data structures and provides insights into future directions and emerging trends in the field. Throughout the book, the authors provide clear and concise explanations, accompanied by illustrative examples and diagrams, to facilitate understanding. The mathematical formalism necessary to describe quantum data structures is presented in a comprehensive yet accessible manner, ensuring that readers can grasp the key concepts without prior expertise in quantum mechanics or quantum computing. "Exploring Quantum Data Structures: From Basics to Advanced Concepts" serves as a valuable resource for researchers, practitioners, and students interested in the field of quantum computing and data structures. It provides a comprehensive guide to understanding and applying quantum data structures, equipping readers with the knowledge and tools to explore this exciting and rapidly evolving field.


Book Synopsis Exploring Quantum Data Structures by : N B Singh

Download or read book Exploring Quantum Data Structures written by N B Singh and published by Independently Published. This book was released on 2023-06-25 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: "Exploring Quantum Data Structures: From Basics to Advanced Concepts" is a comprehensive book that delves into the fascinating world of quantum data structures. It provides a comprehensive introduction to the fundamental principles, theories, and applications of quantum data structures, covering both the basic concepts and advanced techniques. The book begins with an overview of quantum computing and the underlying principles of quantum mechanics, ensuring a solid foundation for understanding quantum data structures. It then progresses to explore various key topics, including quantum algorithms, quantum data representation, quantum data manipulation, and quantum data analysis. The first part of the book focuses on the basics of quantum data structures. It introduces the concept of qubits, quantum gates, and quantum circuits, providing clear explanations and examples of how these elements are used to build and manipulate quantum data structures. The chapter on quantum state representation covers topics such as superposition, entanglement, and measurement, providing insights into the unique properties of quantum data. The book then delves into advanced concepts and techniques in quantum data structures. It covers topics such as quantum data encoding, quantum data fusion, quantum data privacy, and quantum data integration. Each topic is explored in detail, with a focus on both theoretical aspects and practical applications. The book also discusses the challenges and limitations of quantum data structures and provides insights into future directions and emerging trends in the field. Throughout the book, the authors provide clear and concise explanations, accompanied by illustrative examples and diagrams, to facilitate understanding. The mathematical formalism necessary to describe quantum data structures is presented in a comprehensive yet accessible manner, ensuring that readers can grasp the key concepts without prior expertise in quantum mechanics or quantum computing. "Exploring Quantum Data Structures: From Basics to Advanced Concepts" serves as a valuable resource for researchers, practitioners, and students interested in the field of quantum computing and data structures. It provides a comprehensive guide to understanding and applying quantum data structures, equipping readers with the knowledge and tools to explore this exciting and rapidly evolving field.


Fundamentals of Quantum Programming in IBM's Quantum Computers

Fundamentals of Quantum Programming in IBM's Quantum Computers

Author: Weng-Long Chang

Publisher: Springer Nature

Published: 2020-12-21

Total Pages: 354

ISBN-13: 303063583X

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This textbook introduces major topics that include quantum bits, superposition, entanglement, logic gates, quantum search algorithm, quantum Fourier transform, inverse quantum Fourier transform, Shor’s order-finding algorithm and phase estimation. Everyone can write algorithms and programs in the cloud making using IBM’s quantum computers that support IBM Q Experience which contains the composer, open quantum assembly language, simulators and real quantum devices. Furthermore, this book teaches you how to use open quantum assembly language to write quantum programs for dealing with complex problems. Through numerous examples and exercises, readers will learn how to write a quantum program with open quantum assembly language for solving any problem from start to complete. This book includes six main chapters: ·Quantum Bits and Quantum Gates—learn what quantum bits are, how to declare and measure them, what quantum gates are and how they work on a simulator or a real device in the cloud. ·Boolean Algebra and its Applications—learn how to decompose CCNOT gate into six CNOT gates and nine gates of one bit and how to use NOT gates, CNOT gates and CCNOT gates to implement logic operations including NOT, OR, AND, NOR, NAND, Exclusive-OR (XOR) and Exclusive-NOR (XNOR). ·Quantum Search Algorithm and its Applications—learn core concepts of quantum search algorithm and how to write quantum programs to implement core concepts of quantum search algorithm for solving two famous NP-complete problems that are the satisfiability problem in n Boolean variables and m clauses and the clique problem in a graph with n vertices and q edges. ·Quantum Fourier Transform and its Applications—learn core concepts of quantum Fourier transform and inverse quantum Fourier transform and how to write quantum programs to implement them for solving two real applications that are to compute the period and the frequency of two given oracular functions. ·Order-Finding and Factoring—learn core concepts of Shor’s order-finding algorithm and how to write quantum programs to implement Shor’s order-finding algorithm for completing the prime factorization to 15. Phase Estimation and its Applications—learn core concepts of phase estimation and quantum counting and how to write quantum programs to implement them to compute the number of solution(s) in the independent set problem in a graph with two vertices and one edge.


Book Synopsis Fundamentals of Quantum Programming in IBM's Quantum Computers by : Weng-Long Chang

Download or read book Fundamentals of Quantum Programming in IBM's Quantum Computers written by Weng-Long Chang and published by Springer Nature. This book was released on 2020-12-21 with total page 354 pages. Available in PDF, EPUB and Kindle. Book excerpt: This textbook introduces major topics that include quantum bits, superposition, entanglement, logic gates, quantum search algorithm, quantum Fourier transform, inverse quantum Fourier transform, Shor’s order-finding algorithm and phase estimation. Everyone can write algorithms and programs in the cloud making using IBM’s quantum computers that support IBM Q Experience which contains the composer, open quantum assembly language, simulators and real quantum devices. Furthermore, this book teaches you how to use open quantum assembly language to write quantum programs for dealing with complex problems. Through numerous examples and exercises, readers will learn how to write a quantum program with open quantum assembly language for solving any problem from start to complete. This book includes six main chapters: ·Quantum Bits and Quantum Gates—learn what quantum bits are, how to declare and measure them, what quantum gates are and how they work on a simulator or a real device in the cloud. ·Boolean Algebra and its Applications—learn how to decompose CCNOT gate into six CNOT gates and nine gates of one bit and how to use NOT gates, CNOT gates and CCNOT gates to implement logic operations including NOT, OR, AND, NOR, NAND, Exclusive-OR (XOR) and Exclusive-NOR (XNOR). ·Quantum Search Algorithm and its Applications—learn core concepts of quantum search algorithm and how to write quantum programs to implement core concepts of quantum search algorithm for solving two famous NP-complete problems that are the satisfiability problem in n Boolean variables and m clauses and the clique problem in a graph with n vertices and q edges. ·Quantum Fourier Transform and its Applications—learn core concepts of quantum Fourier transform and inverse quantum Fourier transform and how to write quantum programs to implement them for solving two real applications that are to compute the period and the frequency of two given oracular functions. ·Order-Finding and Factoring—learn core concepts of Shor’s order-finding algorithm and how to write quantum programs to implement Shor’s order-finding algorithm for completing the prime factorization to 15. Phase Estimation and its Applications—learn core concepts of phase estimation and quantum counting and how to write quantum programs to implement them to compute the number of solution(s) in the independent set problem in a graph with two vertices and one edge.


Quantum Computing Fundamentals

Quantum Computing Fundamentals

Author: William (Chuck) Easttom II

Publisher: Addison-Wesley Professional

Published: 2021-06-17

Total Pages: 505

ISBN-13: 0136793916

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ONE-VOLUME INTRODUCTION TO QUANTUM COMPUTING Clearly explains core concepts, terminology, and techniques Covers the foundational physics, math, and information theory you need Provides hands-on practice with quantum programming The perfect beginner's guide for anyone interested in a quantum computing career Dr. Chuck Easttom brings together complete coverage of basic quantum computing concepts, terminology, and issues, along with key skills to get you started. Drawing on 30+ years as a computer science instructor, consultant, and researcher, Easttom demystifies the field's underlying technical concepts and math, shows how quantum computing systems are designed and built, explains their implications for cyber security, and previews advances in quantum-resistant cryptography. Writing clearly and simply, he introduces two of today's leading quantum programming languages, Microsoft Q# and QASM, and guides you through sample projects. Throughout, tests, projects, and review questions help you deepen and apply your knowledge. Whether you're a student, professional, or manager, this guide will prepare you for the quantum computing revolution--and expand your career options, too. Master the linear algebra and other mathematical skills you'll need Explore key physics ideas such as quantum states and uncertainty Review data structures, algorithms, and computing complexity Work with probability and set theory in quantum computing Familiarize yourself with basic quantum theory and formulae Understand quantum entanglement and quantum key distribution Discover how quantum computers are architected and built Explore several leading quantum algorithms Compare quantum and conventional asymmetric algorithms See how quantum computing might break traditional cryptography Discover several approaches to quantum-resistant cryptography Start coding with Q#, Microsoft's quantum programming language Simulate quantum gates and algorithms with QASM


Book Synopsis Quantum Computing Fundamentals by : William (Chuck) Easttom II

Download or read book Quantum Computing Fundamentals written by William (Chuck) Easttom II and published by Addison-Wesley Professional. This book was released on 2021-06-17 with total page 505 pages. Available in PDF, EPUB and Kindle. Book excerpt: ONE-VOLUME INTRODUCTION TO QUANTUM COMPUTING Clearly explains core concepts, terminology, and techniques Covers the foundational physics, math, and information theory you need Provides hands-on practice with quantum programming The perfect beginner's guide for anyone interested in a quantum computing career Dr. Chuck Easttom brings together complete coverage of basic quantum computing concepts, terminology, and issues, along with key skills to get you started. Drawing on 30+ years as a computer science instructor, consultant, and researcher, Easttom demystifies the field's underlying technical concepts and math, shows how quantum computing systems are designed and built, explains their implications for cyber security, and previews advances in quantum-resistant cryptography. Writing clearly and simply, he introduces two of today's leading quantum programming languages, Microsoft Q# and QASM, and guides you through sample projects. Throughout, tests, projects, and review questions help you deepen and apply your knowledge. Whether you're a student, professional, or manager, this guide will prepare you for the quantum computing revolution--and expand your career options, too. Master the linear algebra and other mathematical skills you'll need Explore key physics ideas such as quantum states and uncertainty Review data structures, algorithms, and computing complexity Work with probability and set theory in quantum computing Familiarize yourself with basic quantum theory and formulae Understand quantum entanglement and quantum key distribution Discover how quantum computers are architected and built Explore several leading quantum algorithms Compare quantum and conventional asymmetric algorithms See how quantum computing might break traditional cryptography Discover several approaches to quantum-resistant cryptography Start coding with Q#, Microsoft's quantum programming language Simulate quantum gates and algorithms with QASM


Introduction to Computer Science

Introduction to Computer Science

Author: Jean-Paul Tremblay

Publisher:

Published: 1989

Total Pages: 806

ISBN-13: 9780071003483

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Book Synopsis Introduction to Computer Science by : Jean-Paul Tremblay

Download or read book Introduction to Computer Science written by Jean-Paul Tremblay and published by . This book was released on 1989 with total page 806 pages. Available in PDF, EPUB and Kindle. Book excerpt:


Fundamentals of Quantum Chemistry

Fundamentals of Quantum Chemistry

Author: Michael P. Mueller

Publisher: Springer Science & Business Media

Published: 2007-05-08

Total Pages: 277

ISBN-13: 0306475669

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As quantum theory enters its second century, it is fitting to examine just how far it has come as a tool for the chemist. Beginning with Max Planck’s agonizing conclusion in 1900 that linked energy emission in discreet bundles to the resultant black-body radiation curve, a body of knowledge has developed with profound consequences in our ability to understand nature. In the early years, quantum theory was the providence of physicists and certain breeds of physical chemists. While physicists honed and refined the theory and studied atoms and their component systems, physical chemists began the foray into the study of larger, molecular systems. Quantum theory predictions of these systems were first verified through experimental spectroscopic studies in the electromagnetic spectrum (microwave, infrared and ultraviolet/visible), and, later, by nuclear magnetic resonance (NMR) spectroscopy. Over two generations these studies were hampered by two major drawbacks: lack of resolution of spectroscopic data, and the complexity of calculations. This powerful theory that promised understanding of the fundamental nature of molecules faced formidable challenges. The following example may put things in perspective for today’s chemistry faculty, college seniors or graduate students: As little as 40 years ago, force field calculations on a molecule as simple as ketene was a four to five year dissertation project.


Book Synopsis Fundamentals of Quantum Chemistry by : Michael P. Mueller

Download or read book Fundamentals of Quantum Chemistry written by Michael P. Mueller and published by Springer Science & Business Media. This book was released on 2007-05-08 with total page 277 pages. Available in PDF, EPUB and Kindle. Book excerpt: As quantum theory enters its second century, it is fitting to examine just how far it has come as a tool for the chemist. Beginning with Max Planck’s agonizing conclusion in 1900 that linked energy emission in discreet bundles to the resultant black-body radiation curve, a body of knowledge has developed with profound consequences in our ability to understand nature. In the early years, quantum theory was the providence of physicists and certain breeds of physical chemists. While physicists honed and refined the theory and studied atoms and their component systems, physical chemists began the foray into the study of larger, molecular systems. Quantum theory predictions of these systems were first verified through experimental spectroscopic studies in the electromagnetic spectrum (microwave, infrared and ultraviolet/visible), and, later, by nuclear magnetic resonance (NMR) spectroscopy. Over two generations these studies were hampered by two major drawbacks: lack of resolution of spectroscopic data, and the complexity of calculations. This powerful theory that promised understanding of the fundamental nature of molecules faced formidable challenges. The following example may put things in perspective for today’s chemistry faculty, college seniors or graduate students: As little as 40 years ago, force field calculations on a molecule as simple as ketene was a four to five year dissertation project.


Introduction to Quantum Information Science

Introduction to Quantum Information Science

Author: Masahito Hayashi

Publisher:

Published: 2015

Total Pages:

ISBN-13: 9783662435038

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This book presents the basics of quantum information, e.g., foundation of quantum theory, quantum algorithms, quantum entanglement, quantum entropies, quantum coding, quantum error correction and quantum cryptography. The required knowledge is only elementary calculus and linear algebra. This way the book can be understood by undergraduate students. In order to study quantum information, one usually has to study the foundation of quantum theory. This book describes it from more an operational viewpoint which is suitable for quantum information while traditional textbooks of quantum theory lack this viewpoint. The current book bases on Shor's algorithm, Grover's algorithm, Deutsch-Jozsa's algorithm as basic algorithms. To treat several topics in quantum information, this book covers several kinds of information quantities in quantum systems including von Neumann entropy. The limits of several kinds of quantum information processing are given. As important quantum protocols,this book contains quantum teleportation, quantum dense coding, quantum data compression. In particular conversion theory of entanglement via local operation and classical communication are treated too. This theory provides the quantification of entanglement, which coincides with von Neumann entropy. The next part treats the quantum hypothesis testing. The decision problem of two candidates of the unknown state are given. The asymptotic performance of this problem is characterized by information quantities. Using this result, the optimal performance of classical information transmission via noisy quantum channel is derived. Quantum information transmission via noisy quantum channel by quantum error correction are discussed too. Based on this topic, the secure quantum communication is explained. In particular, the quantification of quantum security which has not been treated in existing book is explained. This book treats quantum cryptography from a more practical viewpoint.


Book Synopsis Introduction to Quantum Information Science by : Masahito Hayashi

Download or read book Introduction to Quantum Information Science written by Masahito Hayashi and published by . This book was released on 2015 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This book presents the basics of quantum information, e.g., foundation of quantum theory, quantum algorithms, quantum entanglement, quantum entropies, quantum coding, quantum error correction and quantum cryptography. The required knowledge is only elementary calculus and linear algebra. This way the book can be understood by undergraduate students. In order to study quantum information, one usually has to study the foundation of quantum theory. This book describes it from more an operational viewpoint which is suitable for quantum information while traditional textbooks of quantum theory lack this viewpoint. The current book bases on Shor's algorithm, Grover's algorithm, Deutsch-Jozsa's algorithm as basic algorithms. To treat several topics in quantum information, this book covers several kinds of information quantities in quantum systems including von Neumann entropy. The limits of several kinds of quantum information processing are given. As important quantum protocols,this book contains quantum teleportation, quantum dense coding, quantum data compression. In particular conversion theory of entanglement via local operation and classical communication are treated too. This theory provides the quantification of entanglement, which coincides with von Neumann entropy. The next part treats the quantum hypothesis testing. The decision problem of two candidates of the unknown state are given. The asymptotic performance of this problem is characterized by information quantities. Using this result, the optimal performance of classical information transmission via noisy quantum channel is derived. Quantum information transmission via noisy quantum channel by quantum error correction are discussed too. Based on this topic, the secure quantum communication is explained. In particular, the quantification of quantum security which has not been treated in existing book is explained. This book treats quantum cryptography from a more practical viewpoint.


Fundamentals of OOP and Data Structures in Java

Fundamentals of OOP and Data Structures in Java

Author: Richard Wiener

Publisher: Cambridge University Press

Published: 2000-06-05

Total Pages: 484

ISBN-13: 9780521662208

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A book for an undergraduate course on data structures which integrates the concepts of object-oriented programming and GUI programming.


Book Synopsis Fundamentals of OOP and Data Structures in Java by : Richard Wiener

Download or read book Fundamentals of OOP and Data Structures in Java written by Richard Wiener and published by Cambridge University Press. This book was released on 2000-06-05 with total page 484 pages. Available in PDF, EPUB and Kindle. Book excerpt: A book for an undergraduate course on data structures which integrates the concepts of object-oriented programming and GUI programming.


Fundamentals of Quantum Optics and Quantum Information

Fundamentals of Quantum Optics and Quantum Information

Author: Peter Lambropoulos

Publisher: Springer Science & Business Media

Published: 2007-01-30

Total Pages: 326

ISBN-13: 3540345728

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This book is an introduction to the two closely related subjects of quantum optics and quantum information. The book gives a simple, self-contained introduction to both subjects, while illustrating the physical principles of quantum information processing using quantum optical systems. To make the book accessible to those with backgrounds other than physics, the authors also include a brief review of quantum mechanics. Furthermore, some aspects of quantum information, for example those pertaining to recent experiments on cavity QED and quantum dots, are described here for the first time in book form.


Book Synopsis Fundamentals of Quantum Optics and Quantum Information by : Peter Lambropoulos

Download or read book Fundamentals of Quantum Optics and Quantum Information written by Peter Lambropoulos and published by Springer Science & Business Media. This book was released on 2007-01-30 with total page 326 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is an introduction to the two closely related subjects of quantum optics and quantum information. The book gives a simple, self-contained introduction to both subjects, while illustrating the physical principles of quantum information processing using quantum optical systems. To make the book accessible to those with backgrounds other than physics, the authors also include a brief review of quantum mechanics. Furthermore, some aspects of quantum information, for example those pertaining to recent experiments on cavity QED and quantum dots, are described here for the first time in book form.