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Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods
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AOA 122799
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This book provides the first coherent presentation of this rapidly growing field, covering a vast range of methods and their applications, from basic theory to advanced methods.
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O que se Destaca
Detalhes do produto
- Provides a coherent presentation of the rapidly growing field of ab initio molecular dynamics
- Ideal for graduate students and researchers
- Covers a range of methods and their applications
- Includes pseudo-code and program layout for typical plane wave electronic structure codes
- Written by authors with state-of-the-art research experiences
- Authors have expertise in studying dynamics and reactions of complex molecular systems
| Publisher | Cambridge University Press |
| Publication date | May 25, 2009 |
| Edition | 1st |
| Language | English |
| Print length | 578 pages |
| ISBN-10 | 0521898633 |
| ISBN-13 | 978-0521898638 |
| Item Weight | 2.82 pounds (1.28 kg) |
| Dimensions | 7 x 1 x 9.25 inches (17.8 x 2.5 x 23.5 cm) |
Quem Deverá Comprar?
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Graduate Students
Ideal for graduate students studying computational chemistry or physics, offering foundational and advanced knowledge in molecular dynamics.
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Research Scientists
Beneficial for research scientists needing detailed theoretical and practical insights for molecular dynamics simulations in their projects.
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Educators
Helpful for educators teaching courses in molecular modeling, providing a comprehensive resource for course materials and discussions.
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Beginner Users
May not suit beginners lacking foundational knowledge in molecular dynamics and theoretical concepts crucial for understanding this text.
DESCRIÇÃO DO PRODUTO
Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods
About This Item
Introducing "Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods 1st Edition" - the ultimate guide for students and researchers in the field of molecular dynamics. Whether you're just starting out or looking to expand your knowledge, this book provides a comprehensive overview of the subject, written by experts at the forefront of research. Learn the fundamental concepts and theories behind ab initio molecular dynamics and gain a solid foundation to build upon. The authors, Dominik Marx and Jürg Hutter, bring a wealth of experience and expertise to the table, ensuring that the content is both informative and up-to-date. This book covers a wide range of topics, from basic theory to advanced methods, allowing you to delve deep into the field at your own pace.
The pseudo-code and program layout for typical plane wave electronic structure codes are included, empowering you to enhance and customize your own code. Whether you're interested in computational chemistry, quantum mechanics, or numerical simulations, this book has got you covered. Discover the latest developments in the field and explore how ab initio simulations can be used to study complex molecular systems and chemical reactions. Unlock the secrets of molecular dynamics and gain a deep understanding of potential energy surfaces, electronic properties, and quantum systems. With this knowledge, you'll be able to tackle real-world challenges and contribute to cutting-edge research in the field. Grab your copy of "Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods 1st Edition" today and take your understanding of molecular dynamics to new heights.
It's time to join the ranks of researchers and scientists who are pushing the boundaries of knowledge in this exciting field. Order now and embark on your journey into the world of ab initio molecular dynamics!.
Perguntas e respostas do cliente
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Pergunta:
What is Ab Initio Molecular Dynamics?
Resposta: Ab Initio Molecular Dynamics (AIMD) is a computational simulation method used to study the dynamic behavior of molecular systems based on quantum mechanics. Rather than relying on empirical potentials, AIMD calculates forces derived directly from quantum mechanical principles. This allows for more accurate modeling of molecular interactions and reactions, making it invaluable in fields like chemistry and materials science. For researchers, AIMD provides insights into phenomena like reaction dynamics, material properties, and temperature effects, which are difficult to capture with classical methods. -
Pergunta:
What topics are covered in Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods?
Resposta: The book 'Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods' encompasses foundational concepts and sophisticated techniques in AIMD. It covers topics such as the theoretical underpinnings of molecular dynamics, implementation strategies, and applications in various scientific domains. Additionally, it discusses advanced algorithms, software packages, and best practices for conducting AIMD studies. Researchers and practitioners will find comprehensive case studies that demonstrate the practical applications of these methods in real-world scenarios, enhancing their understanding and ability to apply AIMD effectively. -
Pergunta:
Who should read this book?
Resposta: This book is ideal for graduate students, researchers, and practitioners in fields like chemistry, physics, and materials science interested in molecular dynamics simulations. It serves as both a foundational text for newcomers to the field, offering critical theoretical insights, and an advanced reference for experienced researchers looking to deepen their knowledge. Readers will benefit from the detailed explanations of methods and practical examples, making it suitable for academic coursework or professional research endeavors. -
Pergunta:
What are the prerequisites for understanding this book?
Resposta: To effectively understand the content of 'Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods', readers should have a solid background in quantum mechanics, classical mechanics, and statistical mechanics. Familiarity with computational chemistry concepts and scripting languages may also be beneficial. Those with experience in molecular modeling or related fields will find the material more accessible. This background allows readers to grasp the mathematical formulations and computational techniques presented throughout the text. -
Pergunta:
How is this book useful for computational chemistry research?
Resposta: This book serves as a critical resource for computational chemistry research by bridging theoretical concepts and practical applications. It details methodologies essential for conducting AIMD simulations, which are important for predicting molecular behavior and properties. Researchers can utilize the insights gained from this book to develop more accurate models in their studies, whether they are exploring material synthesis, drug design, or reaction mechanisms. Enhanced computational techniques can also lead to breakthroughs in understanding complex chemical systems. -
Pergunta:
Does the book include practical examples?
Resposta: Yes, 'Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods' includes numerous practical examples and case studies that illustrate the application of AIMD techniques. These examples enable readers to understand how theoretical concepts are applied in real-world research scenarios. By analyzing these cases, readers can learn to implement AIMD methodology in their own research projects, making the book not only a theoretical guide but also a practical manual for aspiring and experienced scientists alike. -
Pergunta:
How does AIMD differ from classical molecular dynamics?
Resposta: AIMD differs from classical molecular dynamics primarily in its approach to calculating forces acting on atoms. While classical methods use empirical potential energy functions to model interactions, AIMD derives forces based on quantum mechanical calculations, leading to increased accuracy in simulating chemical reactions and dynamics. This distinction makes AIMD particularly useful for studying systems where electronic effects are significant, such as bond formation and breaking. Consequently, AIMD provides deeper insights into processes often missed by classical approaches. -
Pergunta:
Can this book help in understanding new materials development?
Resposta: Absolutely! 'Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods' is a valuable resource for understanding the principles behind the design and development of new materials. By applying AIMD techniques highlighted in the book, researchers can predict material properties and behaviors under various conditions, accelerating the discovery of innovative materials. Whether exploring nanomaterials, polymers, or catalysts, the methodologies discussed are essential tools for materials science researchers aiming to develop cutting-edge solutions. -
Pergunta:
What software is compatible with AIMD techniques discussed in the book?
Resposta: The book mentions several software packages that are commonly used for performing AIMD simulations, such as VASP, Quantum ESPRESSO, and CP2K. These programs are designed to facilitate quantum mechanical calculations and support AIMD methodologies effectively. The compatibility of these software tools with the techniques discussed in the book empowers readers to implement their knowledge directly into practical computational projects, increasing their computational capabilities and efficiency in simulating molecular systems. -
Pergunta:
Where can I buy Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods 1st Edition in Angola?
Resposta: You can purchase 'Ab Initio Molecular Dynamics: Basic Theory and Advanced Methods 1st Edition' through Ubuy, which offers a user-friendly platform for buying books in Angola. Ubuy provides a variety of options and often has special deals, making it convenient to acquire this essential resource for your research and studies.
Computer Simulation Editorial Review
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AOA 122799
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Recursos e benefícios
- Provides the first coherent presentation of ab initio molecular dynamics
- Covers a vast range of methods and their applications, from basic theory to advanced methods
- Includes systematic derivations of various ab initio molecular dynamics techniques
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