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This ground-breaking book is about the emerging academic and practical study of subtle energies, which historically, have not been easy to detect. The unique experiments, numerous measurements, and resulting data presented here, have been collected over 30 years of research. The findings have resulted from pioneering discoveries leading to equations, graphs, universal constants, formulae, and laws of nature that eventually connect to cosmology, and the structure of the universe. The book proves, with high scientific and mathematical precision, that consciousness involves more than just the brain, but actually depends on…

The unique experiments, numerous measurements, and resulting data presented here, have been collected over 30 years of research and prove with scientific precision, that consciousness involves more than just the brain, but actually depends on the very fabric of the universe.

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This book discusses entropy and the Second Law of Thermodynamics in such a way that everyone can understand its subject matter. Entropy is one of the most interesting concepts in physics. Although it is a well-defined concept, it is still perceived by even well-known scientists as a concept cloaked in mystery. It is also the most misused, and often abused, concept in physics. In order to understand entropy, one needs to understand the Shannon measure of information, and in order to grasp this idea, one must be familiar with some…

Entropy is one of the most interesting concepts in physics. Although a well-defined concept, it is still frequently perceived as one cloaked in mystery. This book, however, discusses entropy and the Second Law of Thermodynamics in such a way that everyone can understand them.

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From £29.99
By abandoning classical theory and adopting a liberating, empirical approach to fluid behaviour, this book sheds new light on Global Warming, on Ice Ages, why the wind makes waves bigger, and the origin of the Earth’s magnetic field. At heart, it is concerned with how meaning can be extracted from a sequence of measurements—time series analysis. The methods developed (plus Python code) will appeal to both the graduate student and the data analyst. The “Ultraviolet Catastrophe”, the failure to account for black-body radiation, led to quantum mechanics. Another catastrophe was…

The “Ultraviolet Catastrophe”, the failure to account for black-body radiation, led to quantum mechanics. Another catastrophe was politely ignored and fluid dynamics remained trapped in the nineteenth century. The book outlines a solution to this dilemma.

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This book will serve to end the longstanding confusion and debate on quantum mechanics. Using the picture of elementary particles and interactions provided by the Standard Model, it starts by analyzing the physical meaning of the Schrödinger equation, discovers the physical assumptions and consequences implied by quantum theory, and naturally and intuitively explains quantum entanglement and other confusing quantum concepts such as wave-particle duality and quantum eraser experiments. The book shows that the objectivity of reality is not a simple yes-or-no question.

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.

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This book provides a wide perspective on all areas of physics, from atoms to galaxies. It describes the most complicated and difficult issues in the field through simple examples and social analogies. It combines the approach of popular science with sophisticated scholarly insights into the discipline of physics. It also offers some philosophical insights that will be of interest to philosophers and theologians.

This book offers a wide perspective on physics, from atoms to galaxies. It explains complicated issues through simple examples, combining popular science with scholarly insights and offering philosophical perspectives.

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Intended for a wide range of readers, this book shows the objective beauty of science. It highlights the features of the micro-, macro-, and microcosm, and discusses the role and importance of the fundamental constants of the observed universe. It examines the behavior of the human organism as an open non-equilibrium system, as well as ways to transition from a state of “illness” to a state of “health”.

This book shows the objective beauty of science, from the micro- and macrocosm to the fundamental constants of the universe. It examines the human organism as a system and explores ways to transition from a state of “illness” to a state of “health”.

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This book presents the main results of extensive research on the diffraction, radiation and propagation of elastic waves in isotropic and anisotropic media and bodies of various shapes based on integral equations, the separation of variables, the method of Green’s functions, the method of finite elements, and the method of boundary elements. It explores the application of methods and equations of the theory of diffraction to the problems of synthesis of hydroacoustic antennas, and considers the spatial characteristics of loudspeakers. The book also provides a detailed description of the acoustic…

This book covers the diffraction, radiation, and propagation of elastic waves in isotropic and anisotropic media. It details key methods and their application to hydroacoustic antennas, loudspeakers, and the acoustic monitoring of oil products.

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This book explores the modern problems of quantum optics, and shows that, in simple optical systems, it is possible to obtain quantum states that are interesting from the point of view of modern quantum physics and quantum optics. In particular, the quantum behavior of the second and third harmonics and subharmonics generation processes is investigated, highlighting that, in subharmonic processes, it is possible to obtain Schrödinger’s cat-type states of light, which are one of the main problems of quantum physics. The book uses few formulas and mathematical conclusions, opting instead…

This book explores how simple optical systems can create fascinating quantum states, including Schrödinger’s cat-type states of light. Using abundant graphics over formulas, it makes modern quantum optics accessible to scientists, teachers, and students of physics.

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Dialogues on the New Physics

Complexity and Nonlinearity in Nature
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Eurythmic physics is a general science which seeks to contribute to the unification of the wider field of physics in order to promote understanding of a clearer view of nature. This book develops the fundamental aspects of this approach, tracing how it assumes that, because physical phenomena are not linear in reality, they must be discussed from a nonlinear, interrelated, and complex perspective.

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.

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This book presents a complex approach to material composition determination based on the analysis of the joint X-ray spectrum, including fluorescence, scattering, and diffraction reflections. It considers fluorescence, scattered, and diffracted radiations within the common problem of analytical spectrum formation. The complex methods for analyzing the material composition by joint spectra of fluorescence, Compton scattering and diffraction proposed here allow for a widening of the area of the application of X-ray methods. The book will be useful for specialists in the field of solid state physics, as well as advanced…

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.

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In most field applications, broadband measurements are used where the spectral product of the source distribution and the meter’s spectral responsivity is measured. This book discusses detector-based radiometric, photometric, color, radiation-temperature, digital imaging-system, and LED measurements. It also shows that, while in photometry, the meter’s standard response covers only the visible, broadband measurements in the UV and IR require different standards. To avoid large errors when using a traditional detector- or source-standard, where the differences in the source distributions and in the meter’s responsivities produce large errors, the signal…

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.

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This book will be of interest not only to physics scholars who are studying the theoretical aspects of quantum mechanics, electromagnetism, superconductivity and superfluidity, but also to the more general reader. It explores the action of biologically active substances and low-intensity physical factors in ultra-low doses on biological systems, particularly the action of medicinal remedies in ultra-low doses (homeopathy), influence of the color and form of ambient bodies, and the so-called Twin Correlation.

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.

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With an opinionated and irreverent tone, the author debunks most of the current theories in the field of modern physics, appealing to the scientific method and common sense. At the same time, in strict compliance with the already known experimental evidence, he proposes his own version of the facts, aimed at rationalizing and unifying the various aspects in which the nature that surrounds us manifests itself. The result is a possible model of the universe where events are all connected by a common thread, even if distributed on different scales,…

With an irreverent tone, the author debunks modern physics using common sense and experimental evidence. He proposes a new unifying model where all events are connected, from the subatomic to galaxies. This provocative read requires no advanced scientific knowledge.

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In April of 1922, Albert Einstein and Henri Bergson famously disagreed in a debate on the nature of time. With the benefit of hindsight, the source of this conflict appears to be a dichotomy between the geometric views of time considered by Einstein and the subjective experience of it as duration adopted by Bergson. Is Bergson’s experienced duration identical with Einstein’s geometric time, or are they two separate entities that are merely correlated during life? If we assume the latter, how do we enquire into the nature of this relationship?…

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.

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From £32.99
The N-body problem of 6n-12 degrees of freedom with twelve inherent constraints creates a difficult situation in working the equations of motion for three or more masses. This necessitates the mathematical physicist remedying the situation by determining proper constraints to get past this dilemma by requiring a specialized set of conditions to define a unique problem. This book addresses these issues and provides a general approach to solving certain classes of n-body problems, thereby showing that there exists a large body of mass configurations that can be formulated and solved…

This book addresses the complex N-body problem, providing a general approach to show that many mass configurations can be solved deterministically. It gives the reader the tools to master binary, trinary, and quadruple structured configurations for real and theoretical work.

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From Nonlinear Dynamics to Trigonometry’s Magic

A Definite Vision of the Lorenz Equations
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The book develops new methodologies to unravel the mathematics of nonlinear dynamics using simple trigonometry. It offers a complete tutorial for neophytes, as well as experts, in nonlinear dynamics, as it examines, using an original and simple approach, the fundamental example of Chaos, the Lorenz-Haken equations, with high order trigonometry. The book will appeal to physicists, mathematicians, and graduate and undergraduate students alike.

This book unravels the mathematics of nonlinear dynamics using simple trigonometry. A tutorial for beginners and experts, it examines the fundamental example of Chaos, the Lorenz-Haken equations, with an original approach. For physicists, mathematicians, and students alike.

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This book shows that the physical phenomena and processes that take place in nature generally have complicated nonlinear features, which leads to nonlinear mathematical models for the real processes. It focuses on the practical issues involved here, as well as the development of methods to investigate the associated nonlinear mathematical problems, including nonlinear wave propagation. It acquaints the reader with a series of methods and approaches that can be applied to a wide class of nonlinear equations. The book also outlines a way in which an uninitiated reader could investigate…

This book explores the nonlinear features of natural phenomena through mathematical models. It focuses on practical methods to investigate these problems, presenting approaches applicable to a wide class of nonlinear equations and guiding even uninitiated readers.

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This book integrates the research achievements of both western natural sciences and the traditional oriental idea of Yi into a ‘Five-Element Theory of Li Yin and Yang’. By forming the Liyi time-space concept of the theory of quaternions, it proposes four fundamental principles on the basis of the mass-energy-time-space four-image principle. Utilizing the mathematical time-space principle and basic calculus methods, the theory depicts the so-called principles and rules as a simple mathematical model that can be used to comprehend the basic concepts of dynamics, such as matter, motion, time-space, energy,…

This book integrates Western science with Oriental philosophy, proposing a unified theory of physics. Using a simple mathematical model, it explains the fundamental concepts of dynamics, connecting Newtonian mechanics, relativity, and quantum wave dynamics.

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According to Einstein “a physical theory should offer a picture of reality”. This made him frustrated and dissatisfied with the standard interpretation (or lack thereof) of quantum theory, since attempts to get a “picture” from it soon led to contradictions like the wave-particle duality. This book provides such a picture of the quantum world, that is, a “realistic interpretation”. Of course, this needs to be done in a way that is compatible with today’s experimental evidence, including the experiments that seem to contradict (local) realism. The book also offers a…

This book provides the “picture of reality” for the quantum world that eluded Einstein. It offers a realistic interpretation compatible with all experimental evidence, plus new perspectives on dark energy, dark matter, and stellar collapse, summarizing 50 years of research.

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This book presents a generalization of transforms from the frames co-moving with an accelerated particle for uniform circular or linear motion into an inertial frame of reference. The solutions presented here will be of great interest for real-time applications because earth-bound laboratories are inertial only in approximation. The motivation behind this is that real life applications include accelerating and rotating frames with arbitrary orientations more often than the idealized case of inertial frames. The book is divided into three main sections: the first deals with the theory of dynamics, while…

This book generalizes transforms from accelerated frames to inertial frames—essential for real-world applications where labs are not truly inertial. It covers the theory and derivation of relativistic fictitious forces (Coriolis, centrifugal) and the Thomas Wigner effect.

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