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This is an expanded version of the third Dirac Memorial Lecture, given in 1988 by the Nobel Laureate Abdus Salam. Salam's lecture presents an overview of the developments in modern particle physics from its inception at the turn of the century to the present theories seeking to unify all the fundamental forces. In addition, two previously unpublished lectures by Paul Dirac, and Werner Heisenberg are included. These lectures provide a fascinating insight into their approach to research and the developments in particle physics at that time. Nonspecialists, undergraduates and researchers will find this a fascinating book. It contains a clear introduction to the major themes of particle physics and cosmology by one of the most distinguished contemporary physicists.
Elementary particles --- Grand unified theories (Nuclear physics) --- Quantum theory --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Physics --- Mechanics --- Thermodynamics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Gauge fields (Physics) --- Nuclear reactions --- Supergravity --- Supersymmetry --- Unified field theories --- Quantum theory. --- Grand unified theories (Nuclear physics).
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Grand unified theories (Nuclear physics) --- Physics --- -Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Gauge fields (Physics) --- Nuclear reactions --- Supergravity --- Supersymmetry --- Unified field theories --- Philosophy --- Philosophy. --- -Philosophy --- Grand unified theories (Nuclear physics). --- Physics - Philosophy.
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In this book, an attempt is made to provide a hybrid grand unified theory to understand the universe, both in its micro/quantum aspects as well as macro/galactic aspects. The book describes a truly hybrid theory as it encompasses both the modern and ancient theories of the universe, together with its functioning at all levels of human comprehension. One of its authors, Dr Escultura, was nominated in 2005 for a Nobel Prize for his flux theory of gravitation. From then on this theory has been improved, clarified and is now known as the hybrid grand unified theory. This book deals with this new bold theory, unifying mathematics and physics, and answering some open fundamental questions and paradoxes in these disciplines. The book also describes what the ancient scientists knew about these matters.
Grand unified theories (Nuclear physics) --- Mathematical physics. --- Mathematics. --- Nuclear physics. --- Engineering & Applied Sciences --- Civil & Environmental Engineering --- Applied Physics --- Operations Research --- Physics --- Physical Sciences & Mathematics --- Nuclear Physics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Mathematical Physics. --- Physical mathematics --- Math --- Science --- Mathematics --- Gauge fields (Physics) --- Nuclear reactions --- Supergravity --- Supersymmetry --- Unified field theories
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Physics --- Grand unified theories (Nuclear physics) --- History --- 53 <09> --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Gauge fields (Physics) --- Nuclear reactions --- Supergravity --- Supersymmetry --- Unified field theories --- 53 <09> Physics--Geschiedenis van ... --- Physics--Geschiedenis van ... --- Physics - History --- Grand unified theories (Nuclear physics) - History
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Quantum mechanics. Quantumfield theory --- Gauge fields (Physics) --- Grand unified theories (Nuclear physics) --- 530.1 --- Basic principles of physics --- Gauge fields (Physics). --- Grand unified theories (Nuclear physics). --- 530.1 Basic principles of physics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Nuclear reactions --- Supergravity --- Supersymmetry --- Unified field theories --- Fields, Gauge (Physics) --- Gage fields (Physics) --- Gauge theories (Physics) --- Field theory (Physics) --- Group theory --- Symmetry (Physics) --- Acqui 2006
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Astrophysics --- Cosmogony --- Matter --- Astrophysique --- Cosmogonie --- Matière --- Constitution --- Structure --- Physics --- Nuclear reactions --- Grand unified theories (Nuclear physics) --- Philosophy --- -#gsdbf --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Nuclear transformations --- Nuclear transmutation --- Collisions (Nuclear physics) --- Compound nucleus --- Nuclear energy --- Nuclear physics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Gauge fields (Physics) --- Supergravity --- Supersymmetry --- Unified field theories --- Matière --- History --- #gsdbf --- Physics - Philosophy
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Antimatter, already conjectured by A. Schuster in 1898, was actually predicted by P.A.M. Dirac in the late 19-twenties in the negative-energy solutions of the Dirac equation. Its existence was subsequently confirmed via the Wilson chamber and became an established part of theoretical physics. Dirac soon discovered that particles with negative energy do not behave in a physically conventional manner, and he therefore developed his "hole theory". This restricted the study of antimatter to the sole level of second quantization. As a result antimatter created a scientific imbalance, because matter was treated at all levels of study, while antimatter was treated only at the level of second quantization. In search of a new mathematics for the resolution of this imbalance the author conceived what we know today as Santilli’s isodual mathematics, which permitted the construction of isodual classical mechanics, isodual quantization and isodual quantum mechanics. The scope of this monograph is to show that our classical, quantum and cosmological knowledge of antimatter is at its beginning with much yet to be discovered, and that a commitment to antimatter by experimentalists will be invaluable to antimatter science.
Antimatter. --- Antigravity. --- Grand unified theories (Nuclear physics) --- Cosmology. --- Astronomy --- Deism --- Metaphysics --- Grand unification theories (Nuclear physics) --- GUT (Nuclear physics) --- Unification of fundamental particle interactions (Nuclear physics) --- Unified theories --- Gauge fields (Physics) --- Nuclear reactions --- Supergravity --- Supersymmetry --- Unified field theories --- Gravitation --- Matter --- Properties --- Quantum theory. --- Nuclear physics. --- Astronomy. --- Quantum Physics. --- Theoretical, Mathematical and Computational Physics. --- Nuclear Physics, Heavy Ions, Hadrons. --- Astronomy, Astrophysics and Cosmology. --- Elementary Particles, Quantum Field Theory. --- Atomic nuclei --- Atoms, Nuclei of --- Nucleus of the atom --- Physics --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Mechanics --- Thermodynamics --- Quantum physics. --- Mathematical physics. --- Heavy ions. --- Astrophysics. --- Elementary particles (Physics). --- Quantum field theory. --- Relativistic quantum field theory --- Field theory (Physics) --- Quantum theory --- Relativity (Physics) --- Elementary particles (Physics) --- High energy physics --- Nuclear particles --- Nucleons --- Nuclear physics --- Astronomical physics --- Cosmic physics --- Ions --- Physical mathematics --- Mathematics --- Particles (Nuclear physics)
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This third volume of Spin Dynamics in Confined Magnetic Structures addresses central aspects of spin-dynamic phenomena, including recent new developments, on a tutorial level. Researchers will find a comprehensive compilation of the current work in the field. Introductory chapters help newcomers to understand the basic concepts. The more advanced chapters give the current state of the art of spin dynamic issues ranging from the femtosecond to the microsecond regime. This volume concentrates on new experimental techniques such as ferromagnetic-resonance-force microscopy and two-photon photoemission, as well as on aspects of precessional switching, spin-wave excitation, vortex dynamics, spin relaxation, domain-wall dynamics in nanowires and their applications to magnetic logic devices. An important chapter is devoted to the presently very hot subject of the spin-transfer torque, combining the physics of electronic transport and micromagnetics. The comprehensive presentation of these developments makes this volume a very timely and valuable resource for every researcher working in the field of magnetism.
Electromagnetics --- Electronics --- Electrons --- Magnetic structure --- Nuclear spin --- Spin nucléaire --- Electromagnetic Phenomena --- Physics --- Physical Phenomena --- Elementary Particles --- Natural Science Disciplines --- Phenomena and Processes --- Disciplines and Occupations --- Electricity & Magnetism --- Physical Sciences & Mathematics --- Fast Electrons --- Negatrons --- Positrons --- Electron --- Electron, Fast --- Electrons, Fast --- Fast Electron --- Negatron --- Positron --- Spin, Nuclear --- Structure, Magnetic --- Natural Sciences --- Physical Sciences --- Discipline, Natural Science --- Disciplines, Natural Science --- Natural Science --- Natural Science Discipline --- Physical Science --- Science, Natural --- Science, Physical --- Sciences, Natural --- Sciences, Physical --- Baryons --- Fundamental Particles --- Baryon --- Elementary Particle --- Fundamental Particle --- Particle, Elementary --- Particle, Fundamental --- Particles, Elementary --- Particles, Fundamental --- Physical Phenomenon --- Physical Process --- Physical Concepts --- Physical Processes --- Concept, Physical --- Concepts, Physical --- Phenomena, Physical --- Phenomenon, Physical --- Physical Concept --- Process, Physical --- Processes, Physical --- Physic --- Electronic --- Electrical Phenomena --- Electrical Phenomenon --- Electromagnetic Phenomenon --- Electrical Concepts --- Electromagnetic Concepts --- Concept, Electrical --- Concept, Electromagnetic --- Concepts, Electrical --- Concepts, Electromagnetic --- Electrical Concept --- Electromagnetic Concept --- Electromagnetic Phenomenas --- Phenomena, Electrical --- Phenomena, Electromagnetic --- Phenomenon, Electrical --- Phenomenon, Electromagnetic --- Physics. --- Solid state physics. --- Magnetism. --- Magnetic materials. --- Spectroscopy. --- Microscopy. --- Optical materials. --- Electronic materials. --- Magnetism, Magnetic Materials. --- Optical and Electronic Materials. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Optics --- Materials --- Mathematical physics --- Electricity --- Magnetics --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Solids --- Electronic materials --- Qualitative --- Spectrometry --- Analytical chemistry --- Spectrum analysis. --- Materials.
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"This book comprehensively presents the concepts of neutron physics and imaging including neutron properties, neutron matter interaction, neutron imaging, comparison with X-ray and physics and design of neutron sources. It discusses how neutron imaging has gained importance as a powerful non-destructive technique to understand the internal structures of materials/engineered components in wide range of industries by increasing their applicability and efficiency. The book also covers the topics of neutron optics and detectors, basic principles of neutron radiography and tomography, related standards, safety, metrology and regulations in neutron imaging. The book presents applications of neutron imaging in the areas of aerospace industry, nuclear power and manufacturing industry, materials science and engineering, geomechanics, national security, biological, and medical domain. Given its scope, the book will be highly beneficial for postgraduate students, researchers and industry professionals working in the area of engineering and physics, especially non-destructive testing and non-destructive evaluation through neutron imaging."--Publisher.
Neutron radiography. --- Neutrons. --- fundamental particle. --- optics. --- physical sciences. --- technology. --- particule élémentaire --- елементарна честичка --- elementarioji dalelė --- elemi részecske --- particella elementare --- elementarpartikler --- particulă elementară --- фундаментална частица --- Elementarteilchen --- cáithnín bunúsach --- temeljna čestica --- elementair deeltje --- elementārdaļiņa --- cząstka elementarna --- elementární částice --- alkeishiukkanen --- partikola fundamentali --- osnovni delec --- algosake --- základná častica --- основна честица --- partícula elementar --- στοιχειώδη σωματίδια --- partícula elemental --- elementarpartikel --- grimcë elementare --- proton --- fotão --- νετρόνιο --- elementariųjų dalelių fizika --- eletrão --- partiċella fundamentali --- fotoni --- électron --- footon --- neutronas --- electron --- неутрон --- elettrone --- perushiukkanen --- fotone --- neitrons --- fotonas --- Elektron --- ηλεκτρόνιο --- elektronas --- πρωτόνιο --- φωτόνιο --- elementary particle --- prooton --- фотон --- photon --- Neutron --- protonas --- nukleární částice --- elementárna častica --- protone --- електрон --- elektrons --- neutrón --- Proton --- electrón --- elementarna čestica --- elektron --- positron --- протон --- elektroni --- protoni --- protón --- Foton --- foton --- neutrão --- protons --- fotón --- neutrone --- neutron --- elementaarosake --- fotons --- neutroni --- elektrón --- protão --- основна честичка --- технология --- technológia --- teknik --- tecnologia --- technologija --- tehnoloogia --- tehnoloģija --- teknologi --- tehnologie --- tehnologija --- teknologia --- technologia --- teknoloġija --- τεχνολογία --- tecnología --- Technologie --- technologie --- teicneolaíocht --- teknologji --- технологија --- technický postup --- ingeniería --- inžinierstvo --- settore tecnologico --- technika --- egnet teknologi --- ingenjörsvetenskap --- ingénierie --- μηχανολογία --- engenharia --- инженерство --- inženýrství --- inžinerija --- engineering --- inženjering --- tehnika --- inženierpakalpojumi --- inginerie --- ingegneria dei sistemi --- inženierzinība --- inxhinieri --- fyzikálne vedy --- физичке науке --- φυσικές επιστήμες --- xjenzi fiżiċi --- физически науки --- fizikalne vede --- füüsikateadused --- sciences physiques --- fyzikální vědy --- fysikaaliset tieteet --- физички науки --- nauki fizyczne --- naturvetenskap --- fiziniai mokslai --- shkenca fizike --- fysiske videnskaber --- eksaktās dabaszinātnes --- ciências físicas --- Physik --- natuurwetenschap --- fizică --- fizikai tudományok --- eolaíochtaí fisiceacha --- fizika i srodne znanosti --- ciencias físicas --- scienze fisiche --- fysik --- fyzika --- fizika --- физика --- natuurkunde --- física --- füüsika --- physics --- fysica --- fizikë --- fysiikka --- φυσική --- physique --- fisica --- физика и сродни науки --- exakte Naturwissenschaften --- оптика --- ottica --- οπτική --- ótica --- optiikka --- optică --- ottika --- optaic --- optica --- optik --- Optik --- optikë --- optique --- optika --- optyka --- óptica --- fototecnica --- catadiottrica --- diottrica --- fénytan --- диоптрија --- Radiography, Industrial --- Thermal neutrons --- Atoms --- Baryons --- Matter --- Particles (Nuclear physics) --- Constitution
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Nanowires. --- Nanofils --- Energy transfer. --- Energy Transfer. --- Electrons. --- Nanotechnology. --- Energy transfer --- Nanowires --- Energy Transfer --- Electrons --- Nanotechnology --- Biochemical Processes --- Electromagnetic Phenomena --- Physicochemical Processes --- Miniaturization --- Biophysical Processes --- Natural Science Disciplines --- Elementary Particles --- Technology --- Physicochemical Phenomena --- Biophysical Phenomena --- Physical Phenomena --- Biochemical Phenomena --- Physical Processes --- Chemical Processes --- Disciplines and Occupations --- Chemical Phenomena --- Phenomena and Processes --- Technology, Industry, and Agriculture --- Technology, Industry, Agriculture --- Physics - General --- Chemistry - General --- Physics --- Chemistry --- Physical Sciences & Mathematics --- 544.163 --- Relation of chemical structure to electrical and magnetic properties --- EPUB-LIV-FT SPRINGER-B --- Chemical Phenomenon --- Chemical Process --- Physical Chemistry Phenomena --- Physical Chemistry Process --- Physicochemical Phenomenon --- Physicochemical Process --- Chemical Concepts --- Physical Chemistry Concepts --- Physical Chemistry Processes --- Physicochemical Concepts --- Chemical Concept --- Chemistry Process, Physical --- Chemistry Processes, Physical --- Concept, Chemical --- Concept, Physical Chemistry --- Concept, Physicochemical --- Concepts, Chemical --- Concepts, Physical Chemistry --- Concepts, Physicochemical --- Phenomena, Chemical --- Phenomena, Physical Chemistry --- Phenomena, Physicochemical --- Phenomenon, Chemical --- Phenomenon, Physicochemical --- Physical Chemistry Concept --- Physicochemical Concept --- Process, Chemical --- Process, Physical Chemistry --- Process, Physicochemical --- Processes, Chemical --- Processes, Physical Chemistry --- Processes, Physicochemical --- Biochemical Concepts --- Biochemical Phenomenon --- Biochemical Process --- Phenomena, Biochemical --- Biochemical Concept --- Concept, Biochemical --- Concepts, Biochemical --- Phenomenon, Biochemical --- Process, Biochemical --- Processes, Biochemical --- Physical Phenomenon --- Physical Process --- Physical Concepts --- Concept, Physical --- Concepts, Physical --- Phenomena, Physical --- Phenomenon, Physical --- Physical Concept --- Process, Physical --- Processes, Physical --- Biophysical Phenomenon --- Biophysical Process --- Biophysical Concepts --- Biophysical Concept --- Concept, Biophysical --- Concepts, Biophysical --- Phenomena, Biophysical --- Phenomenon, Biophysical --- Process, Biophysical --- Processes, Biophysical --- Arts, Industrial --- Industrial Arts --- Baryons --- Fundamental Particles --- Baryon --- Elementary Particle --- Fundamental Particle --- Particle, Elementary --- Particle, Fundamental --- Particles, Elementary --- Particles, Fundamental --- Natural Sciences --- Physical Sciences --- Discipline, Natural Science --- Disciplines, Natural Science --- Natural Science --- Natural Science Discipline --- Physical Science --- Science, Natural --- Science, Physical --- Sciences, Natural --- Sciences, Physical --- Miniaturisation --- Miniaturisations --- Miniaturizations --- Electrical Phenomena --- Electrical Phenomenon --- Electromagnetic Phenomenon --- Electromagnetics --- Electrical Concepts --- Electromagnetic Concepts --- Concept, Electrical --- Concept, Electromagnetic --- Concepts, Electrical --- Concepts, Electromagnetic --- Electrical Concept --- Electromagnetic Concept --- Electromagnetic Phenomenas --- Phenomena, Electrical --- Phenomena, Electromagnetic --- Phenomenon, Electrical --- Phenomenon, Electromagnetic --- Nanotechnologies --- Fast Electrons --- Negatrons --- Positrons --- Electron --- Electron, Fast --- Electrons, Fast --- Fast Electron --- Negatron --- Positron --- Transfer, Energy --- Atomic wires --- Molecular wires --- Quantum wires --- Subnanoscale wires --- Chemistry. --- Inorganic chemistry. --- Organometallic chemistry. --- Physical chemistry. --- Organometallic Chemistry. --- Inorganic Chemistry. --- Physical Chemistry. --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry, Organometallic --- Metallo-organic chemistry --- Chemistry, Organic --- Inorganic chemistry --- Inorganic compounds --- Physical sciences --- Electric wire --- Nanostructured materials --- Energy storage --- Force and energy --- Transport theory --- Chemistry, Organic. --- Chemistry, inorganic. --- Chemistry, Physical organic. --- Chemistry, Physical organic --- Chemistry, Physical and theoretical --- Organic chemistry --- Organometallic chemistry . --- Chemistry, Inorganic. --- Chemistry, Physical and theoretical.
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