Entropy generation minimization is widely used in thermal problems, sometimes as a unified theory. Is this really the case? This book answers this question, showing the theory has limitations and a definite application scope, beyond which it may provide incorrect results.
At last, a clear path through quantum mechanics. This book intuitively unravels entanglement and wave-particle duality, revealing a profound truth: the objectivity of reality is not a simple yes-or-no question.
This book presents 10 actions for practical results in seismology. Through statistical analysis, we can estimate the probability of the next earthquake and identify foreshocks. From seismic waves, we can deduce an earthquake’s energy, magnitude, and the fault’s orientation.
For physics scholars and general readers, this book explores the action of ultra-low doses on biological systems. It covers medicinal remedies like homeopathy, the influence of color and form, and the Twin Correlation.
Explore technology by understanding the fundamental principles of physics. For first-year Engineering and BSc courses, this book uses simple English and illustrations from everyday life to explain core concepts. With simplified derivations, solved problems, exercises, and MCQs.
Explore Boltzmann’s probabilistic theory of heat, covering entropy, the Gibbs distribution, fluctuations, and dissipation. With applications from phase transitions to earthquakes, this book is for students and researchers seeking new ways of investigation in Thermodynamics.
This book presents a complex approach to material composition determination using joint X-ray spectra of fluorescence, scattering, and diffraction. These methods widen the application of X-ray analysis for specialists in solid state physics and students.
This textbook provides an introduction to physics for undergraduate students of geology and Earth sciences. It explains basic physics theories first, which are then applied to geological phenomena, using accessible math with figures and solved problems.
This book offers a clear introduction to digital electronics. Written in simple language, it breaks down complex concepts with diagrams, solved examples, and numerous practice questions for self-assessment. Ideal for students, teachers, and independent study.
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 is a guide to performing uniform broadband measurements with low uncertainty. It discusses radiometric, photometric, color, and LED measurements, and shows how to avoid large errors by standardizing the measurement procedure and using properly selected meters.
This is the first book to present the direct method for solving inverse problems in X-ray spectroscopy, scattering, tomography, and reflectometry. It discusses the theory for multilayer structures and the phase problem in electron structural crystallography.
This book presents insights into manganese oxides, materials with important technological applications in magnetic refrigeration and sensors. With elegant and didactic mathematical proofs, it will interest both researchers and the general reader interested in the subject.
A self-study guide to Solid State Physics for students of Physics, Engineering, and Materials Science. It contains carefully selected problems and detailed solutions, with core concepts presented concisely and with minimal math to help you master problem-solving.
Constructal theory is widely used, but often incorrectly applied, leading to unreasonable results. This book systematically reviews its applications in fields from economics to heat transfer, pointing out significant flaws, mistakes, and limitations. An essential read for anyone.
This guide helps the optical radiation measurement community switch from traditional source-based methods to higher-accuracy, detector-based applications. It covers user-friendly radiometric practices, setup design, and extensions into the ultraviolet and infrared ranges.
Dialogues on the New Physics
Eurythmic physics seeks to unify physics for a clearer view of nature. This book develops this approach, arguing that because physical phenomena are not linear, they must be understood from a nonlinear, interrelated, and complex perspective.
This book presents research on the diffraction, radiation, and propagation of elastic waves, focusing on interactions between bodies and media interfaces. It details solutions to three-dimensional wave problems for isotropic and anisotropic bodies using Debye potentials.
Explore magnetic nanoparticles (MNPs) as powerful adsorbents for purifying water. This book provides an in-depth overview of MNP synthesis, properties, and applications in removing heavy metals and organic pollutants, enhancing water quality for environmental and human health.
This book is a monograph on Albert Einstein’s odyssey to Special and General Relativity. Bringing together recent studies, it offers an in-depth analysis of the genesis of his theories, Einstein’s own derivations, and the philosophical perspectives of his work.