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Numerical Methods in Physics with Python
86% of respondents would recommend this to a friend
MZN 4602
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This is an ideal standalone textbook for courses on computational physics.
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Detalhes do produto
| Publisher | Cambridge University Press |
| Publication date | July 20, 2023 |
| Edition | 2nd |
| Language | English |
| Print length | 706 pages |
| ISBN-10 | 1009303864 |
| ISBN-13 | 978-1009303866 |
| Item Weight | 2.9 pounds (1.32 kg) |
| Dimensions | 7 x 1.59 x 10 inches (17.8 x 4 x 25.4 cm) |
Quem Deverá Comprar?
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Physics Students
Ideal for undergraduate physics students seeking to understand numerical methods and computational tools in their studies.
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Python Programmers
Beneficial for programmers wanting to apply Python in solving complex physics problems through numerical methods.
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Researchers
Useful for researchers in physics who require numerical techniques for simulations and modeling in their projects.
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Complete Beginners
Not suitable for those without prior knowledge of Python or numerical methods, as it requires foundational understanding.
DESCRIÇÃO DO PRODUTO
Numerical Methods in Physics with Python
Perguntas e respostas do cliente
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Pergunta:
What is the focus of the Numerical Methods in Physics with Python 2nd Edition?
Resposta: The focus of this edition is on applying numerical methods to solve physics problems using Python. It caters to both beginners and experienced programmers by providing practical examples and applications of numerical techniques, such as solving differential equations, performing integration, and simulating physical situations. This makes it an excellent resource for students and professionals who want to enhance their computational skills in physics. -
Pergunta:
Who is the target audience for this book?
Resposta: The target audience includes undergraduate and graduate students in physics, engineering, and computational science programs, as well as professionals working in research who need to apply numerical methods in their work. Additionally, educators looking for a comprehensive guide to teaching computational physics will find it valuable. -
Pergunta:
What programming languages are used in this book?
Resposta: This book predominantly uses Python for implementing numerical methods, making it accessible and relevant given Python's popularity in scientific computing. The code examples provided are well-commented, allowing readers to understand the implementation of methods without needing deep programming expertise. -
Pergunta:
Can beginners understand the content in this book?
Resposta: Yes, beginners can understand the content as the book starts with foundational concepts before progressing to more complex topics. Each chapter includes clear explanations and step-by-step examples, allowing readers to build their understanding gradually and gain confidence in using numerical methods for solving physics problems. -
Pergunta:
What kind of problems does the book address?
Resposta: The book addresses a variety of problems in physics, including classical mechanics, electromagnetism, quantum mechanics, and statistical mechanics. It provides a practical approach to solving these problems through numerical methods, making theoretical concepts more tangible and applicable. -
Pergunta:
Does the book include resources for further learning?
Resposta: Yes, it includes a host of resources for further learning, such as references to other books, online tutorials, and access to Python libraries that are essential for numerical computing. These resources enhance the learning experience by providing pathways for deeper exploration into numerical methods and their applications. -
Pergunta:
Is there an accompanying code repository for this book?
Resposta: Yes, there is an accompanying code repository that provides access to all the code examples used in the book. This can be particularly helpful for readers who want to run the code and experiment with the examples directly, allowing for a hands-on learning experience. -
Pergunta:
How does the second edition differ from the first edition?
Resposta: The second edition is updated with new content, additional examples, and enhanced explanations that reflect the latest advancements in numerical methods and Python programming. Readers can expect improved clarity, more practical applications, and additional exercises that facilitate a deeper understanding of the material. -
Pergunta:
Are there practical exercises included in the book?
Resposta: Yes, the book includes practical exercises at the end of each chapter that challenge readers to apply what they've learned. These exercises range from straightforward programming tasks to complex problem-solving scenarios, enhancing the practical skills necessary for tackling real-world physics problems. -
Pergunta:
Where can I buy Numerical Methods in Physics with Python 2nd Edition?
Resposta: You can buy Numerical Methods in Physics with Python 2nd Edition from Ubuy available in Mozambique. Ubuy is a trusted online platform that stocks a variety of educational books with convenient browsing and purchasing options, ensuring an accessible buying experience for readers.
Python Editorial Review
**Editorial Review** The product in question is a numerical methods book tailored specifically for applications in physics, a niche yet vital area of study for students and professionals alike. Customer reception is mixed, showcasing a divide between those who praise its practical approach and educational value, and others who express disappointment over its content and execution. On one hand, many reviewers commend the book's unique emphasis on integrating numerical methods with physical problems, touting its wealth of worked examples and projects that are particularly relevant to fields such as particle physics. This practical focus, combined with the inclusion of Python code, is seen as a Considerable advantage, especially in the context of modern scientific computing. Readers appreciate that the book provides resources that can help students bridge the gap between theory and application, emphasizing the value of having practical skills in a widely used programming language. Conversely, criticism arises primarily from readers who feel the book falls short in delivering new insights or substantial content. A dissatisfied reviewer claims the information presented is readily available through online searches, and the examples do not offer significant challenges. Others have expressed frustration over the organization and presentation, particularly highlighting awkward formatting that makes reading cumbersome. A notable point of contention is that some readers expected deeper exploration of topics rather than what they perceive as elementary problems. Overall, while the book is appreciated for its practical approach and educational contributions, it faces scrutiny regarding its depth and layout. The diverse opinions suggest that potential buyers should carefully Consider their individual needs and expectations before deciding to purchase. **
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Prós
- Unique focus on practical applications of numerical methods in physics.
- Abundant worked examples and long projects that are relevant to real-world scenarios.
- Inclusion of Python code, which is beneficial for students of modern scientific computing.
Contras
- Some readers feel the content lacks originality and can be found elsewhere online.
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MZN 4602
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Recursos e benefícios
- Combines idiomatic Python programming with foundational numerical methods.
- Covers a comprehensive range of numerical methods used in physics.
- Includes 140 new problems and several new codes for enhanced learning.
- Features new sections on advanced topics like neural networks and Bayesian regression.
- Each chapter concludes with an in-depth project addressing complex physics problems.
- Perfect for students new to computational physics, facilitating quick mastery of Python.
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