This book provides solutions to problems in solid-state physics that have eluded scientific explanation for decades, tackling mysteries like the structure of thin films, the existence of amorphous metals, and the cause of the Giant Hall Effect.
History can teach leaders to solve complex environmental problems. Through case studies of forest management in Australia and the USA, this book reveals how non-linear thinking leads to success. While historical contexts change, the principles for tackling them do not.
This book highlights friccohesity chemistry: the cohesive and adhesive forces in nanoformulations. It shows how this chemistry overcomes the quantum energy barrier to homogenize, encapsulate, and create kinetically balanced nanoemulsions.
Third-Party Risk Policies in the Netherlands
Keeping people safe in the densely populated Netherlands means balancing public health against the profits of industries creating hazardous risks. This book explores this balancing act, offering valuable insight into how sustainable policy can be achieved for all.
This textbook presents the foundations of electrochemistry, necessary to understand chemical power sources like batteries, hydrogen production, and corrosion protection. It is a systematic presentation from theory to practice, outlining concepts, formulas, and research methods.
Entropy, Seismology and the View of Cosmology
To understand the universe, we must look not to space, but to what is hidden under our feet. Regularities in Earth’s seismicity, revealed by new seismic parameters, lead to a theory of entropy seismology with applications in earthquake prediction and even modern physics.
Celebrating Paolo Grigolini’s 50-year legacy in non-equilibrium statistical physics. This collection explores his pioneering work on the quantum-classical connection, anomalous diffusion, and new methods for detecting scaling in time series.
Explore mathematical concepts from historical and cultural perspectives. This book uses original material to offer new discoveries and re-interpretations of problems, from the abacus to integral calculus. An enthusiastic and rigorous read for educators and general readers alike.
An accessible guide to the basic concepts of atomic & molecular quantum structure and how we probe it using light. These ideas underpin modern science. Ideal for undergraduates, this book includes in-chapter examples, questions, workbooks, and accompanying online videos.
This book investigates the use of abrasive flow finishing (AFF) to impart a quality finish on gears. It covers the development of the AFF process, machine design, parametric optimization, and laser texturing, showing how AFF is a productive, economical, and sustainable process.
This book provides a unifying framework for linear models in scientific data analysis. Unlike other texts, it uses a non-least squares approach. This allows for more complex models and simplifies proofs, making the theory easier to read and apply.
Next Generation Peer-to-Peer Engineering
This book provides a history of peer-to-peer technology and defines the “peer-to-peer spectrum,” which expands the idea of a P2P network. It also clarifies overlay networks and provides the in-depth technical description of security and protocols to implement a P2P system.
Extreme Events of Air-Sea Interaction
This book explores air-sea interaction, focusing on the Mediterranean and Red Seas. It reveals how anthropogenic activities have had destructive effects, shifting normal processes towards extreme events with severe impacts on our oceans, agriculture, and socioeconomic sectors.
This book develops Jordan canonical form and shows how to apply it to solving systems of dynamic equations on arbitrary time scales. Beginning with the diagonalizable case, it proceeds to the general case, covering all situations. For senior undergraduate and graduate students.
This book explores the mechanics of smart nanocomposite sandwich plates, covering theories of buckling, vibration and dynamic instability. It presents models for material properties and derives governing equations using the energy method and Hamilton’s principle.
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.
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.
Einstein’s geometric time versus Bergson’s experienced duration. Are they two separate entities? Relying on research into space-time and the philosophy of mind, this book posits that the physical world evolves predictably and examines if our relationship to time can be modified.
This book analyzes boiling processes, showing how heat transfer depends on liquid and surface properties. It offers calculation algorithms to develop programs for optimizing heat transfer equipment, making it essential for specialists in cryogenic, nuclear, and space technology.