Design Concepts for Seismic-Resistant Buildings
This book proposes a quantitative shaking evaluation for seismic-resistant buildings, with guidance to calculate the shaking quantity scale. It also demonstrates using Artificial Intelligence to predict this scale, which is highly important for earthquake early warning systems.
This book is a systematic study of modern engineering sciences, exploring current trends and future developments. Areas covered include artificial intelligence, quantum computing, nanotechnology, advanced manufacturing, and micro-electromechanical systems (MEMs).
This book covers the modeling and control of fluid movement and heat transfer for new technologies. It details the discovery of three new hydrodynamic phenomena and explores the influence of vibrations and electromagnetic fields on liquids to create unique devices and materials.
This book compares dynamic mathematical models to solve problems of impact and shock. Its methodologies help determine the life-resource of large constructions, simulate dynamic contact processes, and design new composite materials. For scientists, students, and engineers.
Nanomaterials
Explore the transformative power of nanomaterials in energy storage, medicine, and environmental remediation. This book presents nanotechnology as a key driver of sustainable development, offering vital insights for researchers, professionals, and students.
This book solves scattering problems for elastic waves in solids using analytical approaches. It provides benchmark solutions for numerical methods and introduces applications in ultrasonic non-destructive evaluation, material characterization, and geophysics.
This textbook on hydroacoustics covers the reflectivity of elastic bodies and the synthesis of hydroacoustic antennas. Along with classical diffraction theory, it uses numerical methods like the finite element method and the boundary element method.
Bridging Classical and Non-Classical Signal Processing Approaches for Enhanced Communication Systems
Explore the fusion of classical and cutting-edge signal processing. This book introduces hybrid systems that boost the performance, reliability, and efficiency of communication networks by integrating foundational techniques with modern advancements like machine learning.
This book derives fluid-dynamic balance equations from a molecular perspective. It shows how Euler equations are obtained in equilibrium and the Navier-Stokes equations in non-equilibrium, linking their validity to small perturbations of the Maxwell distribution.
Process Control with MATLAB/Simulink
Master process control with this practical manual. Apply key concepts using MATLAB and its tools, like Simulink, through step-by-step solved problems. The text progresses from classical control to advanced theories, strengthening knowledge through problem-based learning.
Energy rules the world, shaping policies and sparking conflicts in the race for domination. This book examines the subject from a multidimensional view, covering key energy zones like Russia and the Middle East, as well as the policies pursued by leading nations.
Advance Peridynamics to model thin, shell-like structures. This book unveils extensions for solving shear-locking and introduces enhanced methods for accurately analyzing damage in fibre-reinforced composites.
Accelerated Bridge Construction (ABC) uses prefabricated elements to reduce on-site construction time and traffic disruptions. This book examines ABC for short-span bridges, covering decision-making, systems, inspection methods, and a complete design example.
Fluidic oscillators operate without moving parts. Once forgotten, their recent reinvention allows for the simple and energy-efficient generation of microbubbles. This book explores the applications of these small, reliable, and innovative devices.
This book explains the latest research in mechanical engineering, detailing a new analytical approach—Akbari-Ganji’s Method (AGM)—for solving problems in aerospace, vibration and control, and nanotechnology.
Hydrodynamic and aerodynamic bearings guide rotating machines like turbines under severe conditions. This book provides a numerical analysis of how textured surfaces improve their hydrodynamic, tribological, and structural performance under these demanding operating parameters.
This book covers the measurement of optoelectronic components, focusing on the implementation of static electrical and optical characterization. It links these measurements to solid state physics and presents different LED technologies through detailed experimental analyses.
Drawing on 31 years of experience, this book guides readers in designing safe and cost-effective structures. It includes numerical examples in both SI and US units for components like beams, columns, slabs, and shear walls, plus considerations for dynamic loads like earthquakes.
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.
For students and specialists in nonlinear dynamics, this book develops original methods to study dynamical chaos, synchronization, and dynamic structures in lattices of coupled rotators, using methods from bifurcation theory and qualitative numerical methods.
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