This book describes the principles of microwave circuit theory, bridging electromagnetic fields and circuit analysis. It explores scattering, admittance, impedance, and transmission matrices in detail. Learn analysis methods for complex networks, aided by numerous diagrams.
This book presents a theory of nonlinear response in charged media, yielding Burnett transport coefficients to model heat and mass flows. It applies these methods to extreme scenarios, from gas-phase nuclear reactors to a spacecraft landing on Mars. For specialists.
This book covers the spatial anisotropy of induced optical effects in crystalline materials. It details analytical descriptions, 3D geometric representations, and experimental methods for studying electro-, piezo-, elasto-, and acousto-optic phenomena.
This book explains magnetohydrodynamics: how magnetic fields create forces in conductive fluids. It covers governing equations, nanofluid heat transfer, and new numerical and analytical methods with applications in engineering, nanotechnology, and materials science.
Simulation and Modeling of Emerging Devices
This book covers the principles, modelling, fabrication, and applications of TFETs and FinFETs. A reference for students, researchers, and device engineers, it details simulation aspects and technological developments, assuming a background in semiconductor device physics.
This book focuses on the nanoparticle-based modification of oxide powders for enamels, paints, ceramics, and insulators. It presents studies on the properties and physical processes that occur in these materials when irradiated with accelerated electrons and protons.
This book covers the theory and practice of hypothesis testing: deciding on the plausibility of models based on data. Useful for researchers and practitioners at all levels, it discusses important practical problems and provides detailed algorithms for their solutions.
Entransy
This book introduces entransy theory, an alternative perspective on thermal phenomena. It covers the concept’s principles, its application in process optimization, and the controversies surrounding it. This is an essential introduction for students, engineers, and researchers.
Public disbelief slows the development of nuclear power. This can be overcome by creating reactors with inherent self-protection, where the causes of severe accidents are excluded by the laws of nature. This book collects reports from Russian specialists on such reactors.
Engineering of Solid Rocket Motors
This book explores the systems engineering, production processes and performance issues of solid rockets. It discusses state-of-the-art techniques and recent developments, appealing to rocket scientists, students, and professors.
For advanced students, this book establishes a path from the study of phase transitions to the current understanding of living matter. It explores concepts from statistical mechanics, non-linear systems, chaos and self-organization drawn from physics, chemistry and biology.
This book describes wireless channels for mobile communication system design. It explains mobile propagation and analyses multi-path channel properties, validated by experiments. Topics include street cell design, antenna diversity, and SU/MU-MIMO channel models for 5G systems.
Go on a mathematical adventure that challenges you to think about the “why,” not just the “how.” Featuring relatable characters and real-world problems, this book brings complex topics to life. A fun and engaging read that trains your mind to think mathematically.
Integrated Waste Management
This book investigates Circular Economy (CE) solutions to the issue of waste. It merges science and management to offer practical, techno-managerial solutions for transitioning to a low carbon economy, exploring both managerial aspects and advances in technical detailing.
This book is an introduction to computational methods in physics. It details how to make a physical problem computable, using numerous examples and solved problems from classical mechanics to quantum mechanics, and directly teaches the reader how to implement these techniques.
Explore the wave and vibration equation, emphasizing singular solutions and physical content. This book covers applications from tsunamis and storm breakers to the ringing of bells and collapsing towers. For students, researchers, and engineers in physics and applied mathematics.
When the spherical molecule C60 was discovered in 1985, a science journalist did more than just report the news. He linked the glamorous discovery to the world of soot science, contriving a spectacular argument between scientists to promote the discoverers’ claim to fame.
This textbook explains the physical processes governing the formation and evolution of planetary systems. Designed for undergraduates, the theory is developed from first principles, covering planetary dynamics, magnetic fields, and the fluid dynamics of circumstellar disks.
University texts on industrial electrochemistry often skip the fundamentals. This book details the central aspects of solution conductivity, electrode thermodynamics, and electrode processes not covered in usual programs. It will be useful for undergraduate and graduate students.
This book provides insight into the fundamentals of IoT concepts, architecture, and applications. It details emerging applications—including environmental, agricultural, industrial, and medical sensing—by focusing on specific frameworks, challenges, and future research trends.