Learn to diagnose the Florida landscape. A physician and Master Naturalist shows how to identify past events that have influenced today’s environments. With photos, maps, and case studies, you’ll understand the health of Florida’s ecosystems like never before.
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.
This book describes physical effects caused by impurity atoms that localize electrons and phonons in nanosystems. It presents the first-ever application of the method of local perturbations to describe the physical properties of a wide range of nanosystems.
Decoding Wireless Communications
Decode the intricacies of wireless technology. Through relatable analogies, this guide makes complex concepts clear. Explore everything from MIMO-OFDM to the future of 5G, AI, and the IoT. An enlightening journey for curious beginners and seasoned professionals alike.
Many-body Theory
This book presents a theory of many interacting fermions, relating Landau’s theory of the normal Fermi liquid to quantum-mechanical effects. It derives the interaction function, investigates the validity of the quasiparticle concept, and estimates the ground-state energy.
This book investigates municipal solid waste in India, covering both urban and rural challenges. It considers waste prevention strategies like recycling and reuse, and highlights the connection between waste management, clean water, and sanitation from an Indian perspective.
The Trinity of Mass and Newton’s Way
This book argues that physics has only one concept of mass, an idea that originates not with Einstein, but with Isaac Newton. In his Principia, Newton introduced mass as a single measure of inertia, weight, and gravity. So why was this true legacy so profoundly misunderstood?
These papers on northern Russia’s Ice Age reveal former arctic ice sheets and a unique Siberian glaciation. They tackle the debated size and age of the last glaciation, crucial for global climate models, early human migration, and even the distribution of petroleum reserves.
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.
At the intersection of material science and manufacturing, this book details the incremental forming of aluminum alloy. Based on extensive research, it combines theoretical simulations with experimental findings, leading to unique results with significant impact.
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 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.
Wireless Communication Technologies for IoT
The Internet of Things (IoT) uses wireless connections for real-time, data-driven decision-making. This book explores advancements in Wi-Fi, intelligent antennas, IoT-connected healthcare, smart agriculture, data analysis, energy harvesting, and smart home protocols.
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 reviews statistic/thermodynamic models for both polarized and unpolarized structure functions, with additional applications such as the EMC effect. It will appeal to researchers and students of hadronic and nuclear/particle physics.
For specialists in mathematics, science, and engineering, this guide applies numerical methods to solve complex systems. Explore techniques in C++, Maple, and MATLAB through practical case studies in data analysis, optimisation, and differential equations.
This book explores the ecological aspects of climate change using the ecological footprint model. Featuring case studies from the Danube River and data from a research station north of the Polar Circle, it is of interest to students, teachers, and scientists.
This book describes mathematical methods for calculating nuclear characteristics and intercluster potentials. It discusses phase shift analysis of elastic scattering at low and astrophysical energies and investigates three-body models of light nuclear nuclei.
Based on undergraduate course notes, this book makes chemical physics concepts easier to understand with numerous solved examples. It clearly explains states of matter, then experimental laws in solution, before using thermochemistry to explain the principles behind them.
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.
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