This introductory textbook for undergraduates presents the physical background, mathematical modeling, and dynamical analysis of linear vibrations in discrete and continuous systems, offering analytical solutions and key engineering applications.
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.
A Concise Course of Mathematics with Applications
This book covers a vast range of mathematics, from logic, number theory, and algebra to calculus, topology, and geometry. It includes complex analysis, differential equations, and matrices, with applications in the natural and social sciences, from physics to economics.
This book presents a clear introduction to first order partial dynamic equations (PDEs) on time scales. For senior undergraduate and graduate students of engineering and science, it offers proofs, numerous examples, exercises, and advanced practical problems with solutions.
This book covers degenerate and singular elliptic equations, which appear in applications from glaciology to fluid mechanics. Based on the author’s research, it is a useful reference for graduate students and researchers interested in differential equations.
Iceland’s mineral exploration is a story of gold fever, geology, and geothermal power. This book covers its history, from early settlers to modern discoveries linking geothermal systems to metal deposition, with stories of gold and silver and a chapter on the Faeroe Islands.
Weak chemical interactions, i.e., hydrogen and halogen bonds, control the structure of molecular crystals. This book uses vibrational (Raman) spectra to describe their properties and nature, for students and scientists in chemical, biological, and pharmaceutics research.
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.
Paleozoic Rocks of Tunisia
This book offers a thorough examination of the Paleozoic units in southern Tunisia, exploring topics from lithostratigraphy to unconventional petroleum systems. It details key geological features like Ordovician glacial sediments and oil and gas shale in a North African context.
As pollution challenges drive research, this book reveals the science of selective adsorbents for heavy and precious metals. It offers a systematic guide to designing and optimizing these materials, combining theoretical knowledge with practical interdisciplinary applications.
This book explains basic concepts of mathematical analysis, including functions, numerical sequences, convergence, and limits. It also covers the continuity and differentiability of functions, their applications, and the graphic representation of parametric functions.
This is the first book on the modern Bose-liquid theory of unconventional superconductors and superfluids. A breakthrough beyond standard physics, this theory describes emerging pseudogap behaviors and novel states, comparing theoretical results with experimental findings.
This book discusses the state of the art of OSL dating of Late Quaternary deposits in the Amazonian lowlands. It introduces OSL dating principles, applications, sampling, statistical methods, and techniques adapted for this challenging region.
This book covers the Laplace transform technique for linear systems in electrical and mechanical engineering. It focuses on Laplace and inverse transforms, transfer functions, and applications for solving initial and boundary value problems.
For students in medicine, pharmacy, and dentistry, this text covers General and Inorganic Chemistry with a focus on medical applications. It presents chemical principles and explores their role in developing metal-based diagnostic and therapeutic agents and new cancer therapies.
Birthing the Computer
Birthing the Computer examines the evolution of computer architecture, from magnetic drums to cores and the first transistors. These second-generation machines introduced key concepts in architecture and system software that are found in every computer system today.
This book reveals that fields and particles are rotational changes within an elastic medium called ‘ether’. This theory explains gravitational attraction, electromagnetism, electron spin, and nuclear reactions.
Explore nonlinear physics using the asymptotic perturbation method. This textbook systematically develops the theory, from nonlinear oscillators to fractal and chaotic solutions in NPDEs. With an emphasis on applications and examples, it is ideal for a senior or graduate course.
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.
This book introduces reactor physics in a simple, intuitive way. It explains key mathematical concepts without losing scientific rigour, making it ideal for getting started with radioactivity calculations or basic problems in reactor physics.
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