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Programming Quantum Computers: Essential Algorithms and Code Samples
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Mercedes Gimeno-Segovia is a world-class researcher in quantum computing.
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Détails du produit
- Written by Eric Johnston, a creator of the QCEngine quantum computation simulator
- Co-authored by Nic Harrigan, a researcher in Quantum Engineering at the University of Bristol Centre for Quantum Photonics
- Co-authored by Mercedes Gimeno-Segovia, a world-class researcher in quantum computing with a PhD in Quantum Computing Architectures
- Presents essential algorithms and code samples for programming quantum computers
- Authors have extensive experience in science communication and public engagement
- Offers expert knowledge on the limitations and optimal hardware for quantum computing
| Publisher | O'Reilly Media |
| Publication date | August 13, 2019 |
| Edition | 1st |
| Language | English |
| Print length | 336 pages |
| ISBN-10 | 1492039683 |
| ISBN-13 | 978-1492039686 |
| Item Weight | 2.31 pounds (1.05 kg) |
| Dimensions | 6.75 x 0.5 x 9.25 inches (17.1 x 1.3 x 23.5 cm) |
À qui est-ce destiné ?
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Aspiring Developers
Ideal for those looking to start a career in quantum computing and understand core programming concepts.
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Researchers
Suitable for academic researchers seeking practical, hands-on examples of quantum algorithms in real-world applications.
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Tech Enthusiasts
Great for technology enthusiasts wanting to explore cutting-edge developments in quantum computing and coding practices.
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Beginner Programmers
Not suitable for complete beginners lacking foundational coding skills or understanding of computer science principles.
DESCRIPTION DU PRODUIT
Programming Quantum Computers: Essential Algorithms and Code Samples
About This Item
Product Title: Programming Quantum Computers: Essential Algorithms and Code Samples 1st Edition Experience the future of computing with "Programming Quantum Computers: Essential Algorithms and Code Samples 1st Edition." Written by renowned experts in the field, this comprehensive guide provides a deep understanding of quantum computing and its applications. Authored by Eric Johnston, Mercedes Gimeno-Segovia, and Nic Harrigan, this book offers a unique perspective from leading researchers and practitioners. Eric Johnston, the creator of the QCEngine quantum computation simulator, brings his expertise in engineering, surprise, and whimsy to unravel the complexities of quantum computing.
With a background in quantum physics and science communication, Nic Harrigan excels at explaining intricate concepts in a relatable way. His extensive experience in science communication ensures that readers will grasp even the most nuanced details of quantum computing. Mercedes Gimeno-Segovia, a world-class researcher in quantum computing, adds her valuable insights and expertise.
Her groundbreaking work in linear optical quantum computing has revolutionized the field and made quantum computing hardware a feasible reality. Within the pages of this book, you will discover a wide range of topics, including programming quantum computers, quantum computer algorithms, essential algorithms for quantum computers, and quantum programming languages. Delve into the world of quantum computing technology, quantum circuits and gates, and quantum computer simulation.
Gain a thorough understanding of quantum information theory and explore the critical aspects of quantum error correction. Uncover the diverse applications of quantum computers, from quantum computing research to its future impact on various industries such as healthcare, finance, logistics, artificial intelligence, cybersecurity, telecommunications, and the energy sector. Looking to further your knowledge? Programming Quantum Computers also introduces advanced quantum computing techniques and sophisticated quantum optimization algorithms for data analysis.
Whether you're a beginner or an experienced programmer, this book provides a comprehensive introduction to quantum computing. With clear explanations, engaging code samples, and insightful examples, it is the perfect resource for students, researchers, and technology enthusiasts alike. Embark on an exciting journey into the world of quantum computing.
Order your copy of "Programming Quantum Computers: Essential Algorithms and Code Samples 1st Edition" today and become a part of the quantum revolution!.
Questions et réponses des clients
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question:
What is the main focus of 'Programming Quantum Computers: Essential Algorithms and Code Samples'?
répondre: The book primarily focuses on the foundational algorithms and code samples essential for programming quantum computers. It explores key quantum concepts such as qubits, superposition, and entanglement, providing readers with a comprehensive understanding of quantum programming. By integrating theoretical lessons with practical code examples, it serves as both an educational resource for beginners and a reference for experienced programmers looking to enhance their skills in quantum computing. -
question:
Who is the target audience for this book?
répondre: The primary audience for 'Programming Quantum Computers: Essential Algorithms and Code Samples' includes computer science students, quantum computing researchers, and software developers. It is suitable for those with a foundational knowledge of programming and mathematics, who wish to delve into the realm of quantum computing. Furthermore, educators seeking to teach quantum programming concepts may also find it an invaluable resource for lesson planning and curriculum development. -
question:
What programming languages are covered in this edition?
répondre: This edition discusses multiple programming languages relevant to quantum computing, notably Qiskit and Cirq. Qiskit is popular for IBM's quantum systems, while Cirq is tailored for Google's quantum processors. The inclusion of diverse coding languages enables readers to choose the one that aligns with their projects or preferences. Practical examples provided in the book allow users to experiment with different languages effortlessly, promoting a deeper understanding of their nuances and applications. -
question:
Are there any prerequisites for reading this book?
répondre: While the book is accessible to newcomers, having basic knowledge of classical programming concepts and familiarity with linear algebra can enhance comprehension. The text starts with introductory concepts, gradually progressing to more complex algorithms and code samples. Readers without a background in quantum theory might consider complementary study materials, but the step-by-step approach used in the book aids in easing readers into quantum computational paradigms without overwhelming them. -
question:
Can this book help in real-world applications of quantum programming?
répondre: Absolutely! 'Programming Quantum Computers: Essential Algorithms and Code Samples' bridges theory and practice, giving readers tools to solve tangible problems using quantum technology. The algorithms discussed have practical implications in areas such as cryptography, optimization, and material science. By mastering the content, readers can apply quantum programming techniques in ongoing technological advancements or innovative projects in quantum research and industry applications. -
question:
What unique features does this book offer compared to other quantum computing texts?
répondre: This book distinguishes itself through its focus on practical coding combined with theoretical foundations. It includes hands-on code samples that readers can directly implement and modify. Additionally, by featuring contemporary algorithms and detailed explanations, it enhances the learning experience, making complex topics approachable. The blend of code and concept allows readers to gain not just knowledge but also practical skills that are critical in the rapidly evolving field of quantum computing. -
question:
Does the book include exercises or problems for practice?
répondre: Yes, 'Programming Quantum Computers: Essential Algorithms and Code Samples' includes practical exercises designed to reinforce learning. These exercises allow readers to apply the concepts and techniques learned throughout each chapter. Engaging with these problems enhances retention and provides an avenue for hands-on experience, which is crucial for understanding quantum algorithms deeply. Readers can challenge themselves with the exercises to build their confidence in quantum programming. -
question:
How does the book address the future of quantum computing?
répondre: The book explores the future of quantum computing by discussing emerging trends, potential applications, and the development of algorithms that may drive innovation. It emphasizes the importance of quantum computing in various sectors, signaling a shift in computational capabilities. Readers are encouraged to think critically about the implications of quantum technologies and remain adaptable as advancements occur. Such insights provide a vision for future research and development pathways in quantum computing. -
question:
What additional resources are recommended alongside this book?
répondre: Alongside 'Programming Quantum Computers: Essential Algorithms and Code Samples', readers may benefit from supplementary resources such as online courses, tutorials, and forums dedicated to quantum computing. Platforms like Qiskit and Google Cirq offer vast communities and additional materials, enhancing the learning process. Engaging with forums can provide insight into common challenges faced by learners, fostering collaboration and knowledge-sharing that can complement the book's content. -
question:
Where can I buy Programming Quantum Computers: Essential Algorithms and Code Samples 1st Edition?
répondre: You can purchase 'Programming Quantum Computers: Essential Algorithms and Code Samples 1st Edition' through Ubuy in Djibouti. Ubuy provides a reliable platform for sourcing this book, often featuring a range of entry points for various customer needs, making it a convenient choice for acquiring this vital resource in the field of quantum computing.
Design & Architecture Editorial Review
"Programming Quantum Computers" is a supplementary resource for those interested in learning to program quantum computers. Although it lacks real programming examples used in the industry, it provides insight on quantum algorithms that use minimal advanced math, mostly assuming programming background. The book covers basics well and includes useful examples, algorithms and practical insights. However, some parts are hard to understand without a knowledge of complex numbers and linear algebra. The book is highly recommended for programmers with no previous knowledge in quantum computing. The Kindle formatting, however, was criticized due to inadequate representation of formulas. Overall, the book is a good resource that uses a programming approach to complement other books that present quantum computing from a linear algebra approach.
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Avantages
- Good resource for learning to program quantum computers
- Useful examples and algorithms
- Minimal advanced math required
- Book explains quantum algorithms in a practical way
- Complements other linear algebra focused quantum computing books
- Provides practical and less abstract vision of quantum computing
Les inconvénients
- Lacks real programming examples used in the industry
CONFIANCE EN LA PLATEFORME & PROTECTION DE L'ACHETEUR
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Caractéristiques et avantages
- Mercedes Gimeno-Segovia is a world-class researcher in quantum computing.
- PhD in Quantum Computing Architectures from Imperial College London
- 7+ years of research experience in the field
- Expert knowledge on the limitations of quantum computing implementations
- Passionate about understanding every last detail of a physical system
- Accomplished violinist and science communicator
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