SKU/Artículo: AMZ-B0FVMGC49D

Advanced Plasma Physics: Python Simulations And Numerical Methods

Format:

Paperback

Kindle

Paperback

Detalles del producto
Disponibilidad:
En stock
Peso con empaque:
0.93 kg
Devolución:
Condición
Nuevo
Producto de:
Amazon
Viaja desde
USA

Sobre este producto
  • Dive deep into the fascinating world of plasma, the fourth state of matter, with "Advanced Plasma Physics: Python Simulations And Numerical Methods." This comprehensive guide is meticulously crafted for graduate students, researchers, and engineers seeking to bridge the gap between complex plasma theory and practical computational implementation. Moving beyond foundational concepts, this book provides an unparalleled resource for understanding and modeling advanced plasma phenomena, from fusion energy and industrial applications to astrophysical processes. It uniquely integrates rigorous theoretical treatment with hands-on, modern computational techniques, empowering you to not just understand but actively *simulate* the intricate dynamics of plasma. The core feature of this book lies in its dual-pronged approach. First, it meticulously covers advanced topics in plasma physics, including kinetic theory, magnetohydrodynamics (MHD), wave propagation, instabilities, and transport phenomena, delving into the mathematical formalisms and physical insights required for a deep understanding. Second, and crucially, it seamlessly weaves in the power of Python for numerical simulations. You'll explore a wide array of essential numerical methods – finite differences, finite elements, particle-in-cell (PIC), and spectral methods – specifically tailored for plasma problems. Each method is introduced with clear explanations, followed by practical Python implementations and examples, allowing you to build a robust toolkit for tackling real-world plasma challenges. The book emphasizes practical application, guiding you through the process of setting up, running, and analyzing simulations, complete with detailed code explanations and troubleshooting tips. This unique synergy offers a significant advantage: you won't just learn *about* plasma physics; you'll learn *how to do* plasma physics computationally. The use of Python, with its extensive scientific computing ecosystem (NumPy, SciPy, Matplotlib), makes the complex world of plasma simulations accessible and efficient. This book enables you to transition from theoretical understanding to the practical capability of developing, customizing, and critically evaluating your own plasma simulation codes. It cultivates a deep intuition for plasma behavior by allowing you to directly experiment with parameters and observe their effects, a skill invaluable for cutting-edge research and development in diverse fields, from fusion reactor design to space weather prediction. You will gain the confidence to interpret sophisticated simulation results and contribute meaningfully to the advancement of plasma science. Upon completing this book, you will be equipped to: * Master advanced theoretical concepts in plasma physics, including kinetic and fluid models. * Gain expert proficiency in applying a wide range of numerical methods to solve complex plasma problems. * Develop, implement, and optimize custom Python-based plasma simulation codes from scratch. * Critically analyze and interpret simulation results to derive meaningful physical insights. * Accelerate your research and problem-solving capabilities in plasma science and engineering. * Enhance your career prospects in fusion energy, industrial plasma technology, space physics, and astrophysics.
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AR$60.904
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AR$31.233

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