Results for 'electric tensor waves'

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  1.  28
    Micromorphic Electromagnetic Theory and Waves.A. Cemal Eringen - 2006 - Foundations of Physics 36 (6):902-919.
    This paper introduces a continuum microelectromagnetic theory (also called micromorphic electromagnetic theory), to discuss electromagnetic phenomena in bodies with microstructures. Balance laws of microelectromagnetic media of the first-grade are given. Constitutive equations are developed. The field equations are obtained . It has been shown that, this theory gives rise to several new vector and tensor waves. A theorem of conservation of energy (Poynting type) is proved. Dispersion relations are obtained for both vector and tensor waves. Relations (...)
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  2.  30
    General relativity and gravitational waves.Joseph Weber - 1961 - New York,: Interscience Publishers.
    An internationally famous physicist and electrical engineer, the author of this text was a pioneer in the investigation of gravitational waves. Joseph Weber's General Relativity and Gravitational Waves offers a classic treatment of the subject. Appropriate for upper-level undergraduates and graduate students, this text remains ever relevant. Brief but thorough in its introduction to the foundations of general relativity, it also examines the elements of Riemannian geometry and tensor calculus applicable to this field. Approximately a quarter of (...)
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  3.  9
    Neo-classical Relativistic Mechanics Theory for Electrons that Exhibits Spin, Zitterbewegung, Dipole Moments, Wavefunctions and Dirac’s Wave Equation.James L. Beck - 2023 - Foundations of Physics 53 (3):1-39.
    In this work, a neo-classical relativistic mechanics theory is presented where the spin of an electron is an inherent part of its world space-time path as a point particle. The fourth-order equation of motion corresponds to the same covariant Lagrangian function in proper time as in special relativity except for an additional spin energy term. The theory provides a hidden-variable model of the electron where the dynamic variables give a complete description of its motion, giving a classical mechanics explanation of (...)
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  4.  50
    Clifford Algebra Formulation of an Electromagnetic Charge-Current Wave Theory.Amr M. Shaarawi - 2000 - Foundations of Physics 30 (11):1911-1941.
    In this work, a Clifford algebra approach is used to introduce a charge-current wave structure governed by a Maxwell-like set of equations. A known spinor representation of the electromagnetic field intensities is utilized to recast the equations governing the charge-current densities in a Dirac-like spinor form. Energy-momentum considerations lead to a generalization of the Maxwell electromagnetic symmetric energy-momentum tensor. The generalized tensor includes new terms that represent contributions from the charge-current densities. Stationary spherical modal solutions representing the charge-current (...)
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  5.  7
    Heinrich Hertz and Electric Waves.Salvo D'Agostino - 1997 - Centaurus 39 (3):267-272.
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  6.  12
    Effect of Neuromuscular Electrical Stimulation Training on the Finger Extensor Muscles for the Contralateral Corticospinal Tract in Normal Subjects: A Diffusion Tensor Tractography Study.Sung Ho Jang & You Sung Seo - 2018 - Frontiers in Human Neuroscience 12.
  7.  42
    Attention, consciousness, and electrical wave activity within the cortical column.David LaBerge - 2001 - International Journal of Psychophysiology 43 (1):5-24.
  8.  12
    Growth of electric space-charge and radio waves in moving ion streams.J. H. Piddington - 1958 - Philosophical Magazine 3 (35):1241-1255.
  9.  19
    What Heinrich Hertz discovered about electric waves in 1887–1888.Jed Buchwald, Chen-Pang Yeang, Noah Stemeroff, Jenifer Barton & Quinn Harrington - 2020 - Archive for History of Exact Sciences 75 (2):125-171.
    Among the most influential and well-known experiments of the 19th century was the generation and detection of electromagnetic radiation by Heinrich Hertz in 1887–1888, work that bears favorable comparison for experimental ingenuity and influence with that by Michael Faraday in the 1830s and 1840s. In what follows, we pursue issues raised by what Hertz did in his experimental space to produce and to detect what proved to be an extraordinarily subtle effect. Though he did provide evidence for the existence of (...)
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  10.  59
    Tensor Lagrangians, Lagrangians Equivalent to the Hamilton-Jacobi Equation and Relativistic Dynamics.Alexander Gersten - 2011 - Foundations of Physics 41 (1):88-98.
    We deal with Lagrangians which are not the standard scalar ones. We present a short review of tensor Lagrangians, which generate massless free fields and the Dirac field, as well as vector and pseudovector Lagrangians for the electric and magnetic fields of Maxwell’s equations with sources. We introduce and analyse Lagrangians which are equivalent to the Hamilton-Jacobi equation and recast them to relativistic equations.
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  11.  13
    Correction to: What Heinrich Hertz discovered about electric waves in 1887–1888.Jed Buchwald, Chen-Pang Yeang, Noah Stemeroff, Jenifer Barton & Quinn Harrington - 2020 - Archive for History of Exact Sciences 75 (2):173-173.
    Unfortunately, only after online first article publication, it was noticed that the first four sentences in footnote two were incorrect.
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  12.  20
    Thresholds of the human eye for electric stimulation by different wave forms.J. W. Gebhard - 1952 - Journal of Experimental Psychology 44 (2):132.
  13.  23
    The Fate of Tensor-Vector-Scalar Modified Gravity.Shannon Sylvie Abelson - 2022 - Foundations of Physics 52 (1):1-19.
    The 2017 codetection of electromagnetic radiation and gravitational waves was the first of its kind and marked the beginning of multimessenger astronomy. But this event has been treated within recent literature as something of an end as well. The 2017 detection is often regarded as an instance of falsification for all theories of modified gravity which postulate gravitational waves propagate along separate geodesics from electromagnetic radiation, perhaps most notably Jacob Bekenstein’s Tensor-Vector-Scalar gravity. I critically examine this explicit (...)
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  14.  6
    How Hertz Fabricated Helmholtzian Forces in His Karlsruhe Laboratory or Why He Did Not Discover Electric Waves in 18871.Jed Z. Buchwald - 1994 - In Lorenz Krüger (ed.), Universalgenie Helmholtz. Rückblick nach 100 Jahren. Akademie Verlag. pp. 43-65.
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  15.  19
    Review of The Creation of Scientific Effects: Heinrich Hertz and Electric Waves by Jed Z. Buchwald. [REVIEW]Davis Baird - 1996 - Philosophy of Science 63 (1):141-143.
  16.  6
    The Creation of Scientific Effects: Heinrich Hertz and Electric Waves by Jed Z. Buchwald. [REVIEW]P. Harman - 1995 - Isis 86:341-342.
  17.  8
    Jed Z. Buchwald, The Creation of Scientific Effects: Heinrich Hertz and Electric Waves. Chicago: Chicago University Press, 1994. Pp. xiv+482. ISBN 0-226-07887-6, £59.95, $75.00 ; 0-226-07888-4, £26.25, $32.95. [REVIEW]Graeme Gooday - 1997 - British Journal for the History of Science 30 (2):233-249.
  18.  13
    Wave Propagation: From Electrons to Photonic Crystals and Left-Handed Materials.Peter Markos & Costas M. Soukoulis - 2008 - Princeton University Press.
    This textbook offers the first unified treatment of wave propagation in electronic and electromagnetic systems and introduces readers to the essentials of the transfer matrix method, a powerful analytical tool that can be used to model and study an array of problems pertaining to wave propagation in electrons and photons. It is aimed at graduate and advanced undergraduate students in physics, materials science, electrical and computer engineering, and mathematics, and is ideal for researchers in photonic crystals, negative index materials, left-handed (...)
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  19. On geometric objects, the non-existence of a gravitational stress-energy tensor, and the uniqueness of the Einstein field equation.Erik Curiel - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 66:90-102.
    The question of the existence of gravitational stress-energy in general relativity has exercised investigators in the field since the inception of the theory. Folklore has it that no adequate definition of a localized gravitational stress-energetic quantity can be given. Most arguments to that effect invoke one version or another of the Principle of Equivalence. I argue that not only are such arguments of necessity vague and hand-waving but, worse, are beside the point and do not address the heart of the (...)
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  20.  23
    A vector product formulation of special relativity and electromagnetism.Charles P. Poole, Horacio A. Farach & Yakir Aharonov - 1980 - Foundations of Physics 10 (7-8):531-553.
    The vector product method developed in previous articles for space rotations and Lorentz transformations is extended to the cases of four-vectors, anti-symmetric tensors, and their transformations in Minkowski space. The electromagnetic fields are expressed in “six-vector” form using the notationH +iE, and this vector form is shown to be relativistically invariant. The wave equations of electromagnetism are derived using these vector products. The following three equations are deduced, which summarize electrodynamics in a compact form: (1) Maxwell's four equations expressed as (...)
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  21.  9
    Effects of Pulsed-Wave Chromotherapy and Guided Relaxation on the Theta-Alpha Oscillation During Arrest Reaction.Guy Cheron, Dominique Ristori, Mathieu Petieau, Cédric Simar, David Zarka & Ana-Maria Cebolla - 2022 - Frontiers in Psychology 13.
    The search for the best wellness practice has promoted the development of devices integrating different technologies and guided meditation. However, the final effects on the electrical activity of the brain remain relatively sparse. Here, we have analyzed of the alpha and theta electroencephalographic oscillations during the realization of the arrest reaction when a chromotherapy session performed in a dedicated room [Rebalance device], with an ergonomic bed integrating pulsed-wave light stimulation, guided breathing, and body scan exercises. We demonstrated that the PWL (...)
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  22.  78
    “True Transformations Relativity” and Electrodynamics.Tomislav Ivezić - 2001 - Foundations of Physics 31 (8):1139-1183.
    Different approaches to special relativity (SR) are discussed. The first approach is an invariant approach, which we call the “true transformations (TT) relativity.” In this approach a physical quantity in the four-dimensional spacetime is mathematically represented either by a true tensor (when no basis has been introduced) or equivalently by a coordinate-based geometric quantity comprising both components and a basis (when some basis has been introduced). This invariant approach is compared with the usual covariant approach, which mainly deals with (...)
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  23.  93
    Positive- and negative-frequency parts of D'Alembert's equation with applications in electrodynamics.Boris Leaf - 1996 - Foundations of Physics 26 (3):337-368.
    It is shown that in every gauge the potential of the electromagnetic field in the presence of sources is resolved by an extension of the Helmholtz theorem into a solenoidal component and an irrotational component irrelevant for description of the field. Only irrotational components are affected by gauge transformations; in Coulomb gauge the irrotational component vanishes: the potential is solenoidal. The method of solution of the wave equation by use of positive- and negative-frequency parts is extended to solutions of D'Alembert's (...)
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  24.  6
    The politics of electricity use and non-use in late Ottoman Istanbul.Nurcin Ileri - forthcoming - History of Science.
    This article focuses on the earlier encounters and uses of electricity, its technology, and its infrastructure to understand how electricity formed a contested terrain of politics among the city’s varying actors, such as state officials, financial investors, and consumers, in late Ottoman Istanbul, roughly between the 1870s and early 1920s. I contend that people used electricity as a political tool in their everyday lives even before they could access it physically. Electricity skepticism during the reign of Sultan Abdülhamid II (1876–1909) (...)
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  25.  43
    Poynting Theorem, Relativistic Transformation of Total Energy–Momentum and Electromagnetic Energy–Momentum Tensor.Alexander Kholmetskii, Oleg Missevitch & Tolga Yarman - 2016 - Foundations of Physics 46 (2):236-261.
    We address to the Poynting theorem for the bound electromagnetic field, and demonstrate that the standard expressions for the electromagnetic energy flux and related field momentum, in general, come into the contradiction with the relativistic transformation of four-vector of total energy–momentum. We show that this inconsistency stems from the incorrect application of Poynting theorem to a system of discrete point-like charges, when the terms of self-interaction in the product \ and bound electric field \ are generated by the same (...)
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  26.  14
    Wave-function and the concept of a nano-mental element of representation.Eric Wallich - 1993 - Acta Biotheoretica 41 (1-2):119-125.
    Scientific endeavour has often tried to localize superior cerebral functions either in areas like the ones described by Broca as being those connected with language in the left hemisphere, or in the huge array of the hundred billion of interconnected neurons. But in this last case the coined description of the grandmother neuron, tends to show humorously that hopes have fallen short of their target.Along the same lines, the specific timing of electric neural activity is known to take place (...)
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  27.  62
    To Consider the Electromagnetic Field as Fundamental, and the Metric Only as a Subsidiary Field.Friedrich W. Hehl & Yuri N. Obukhov - 2005 - Foundations of Physics 35 (12):2007-2025.
    In accordance with an old suggestion of Asher Peres (1962), we consider the electromagnetic field as fundamental and the metric as a subsidiary field. In following up this thought, we formulate Maxwell’s theory in a diffeomorphism invariant and metric-independent way. The electromagnetic field is then given in terms of the excitation $H = ({\cal H}, {\cal D})$ and the field strength F = (E,B). Additionally, a local and linear “spacetime relation” is assumed between H and F, namely H ~ κ (...)
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  28.  24
    The analog of electric and magnetic fields in stationary gravitational systems.Franz Embacher - 1984 - Foundations of Physics 14 (8):721-738.
    Newtonian and Machian aspects of the stationary gravitational field are brought into formal analogy with a stationary electromagnetic field. The electromagnetic vector potential equals (up to a factor) the timelike Killing vector field. The current density is given by the contraction of the Killing vector with the Ricci tensor. A coordinate-dependent split in electric and magnetic field vectors is given, and some results of classical electrodynamics are used to illustrate the analogy. In the linearized theory, the usual Maxwell (...)
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  29.  70
    Bands of Localized Electromagnetic Waves in 3D Random Media.Marian Rusek & Arkadiusz Orłowski - 1998 - Foundations of Physics 28 (4):667-681.
    Anderson localization of electromagnetic waves in three-dimensional disordered dielectric structures is studied using a simple yet realistic theoretical model. An effective approach based on analysis of probability distributions, not averages, is developed. The disordered dielectric medium is modeled by a system of randomly distributed electric dipoles. Spectra of certain random matrices are investigated and the possibility of appearance of the continuous band of localized waves emerging in the limit of an infinite medium is indicated. It is shown (...)
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  30.  15
    The $$a$$ a -Wave of the Electroretinogram and Iron-Induced Oxidative Stress: A Model.Deepak K. Pattanaik, Amir Prasad Sahu, Vasudevan Lakshminarayanan & Nachieketa K. Sharma - 2021 - Acta Biotheoretica 70 (1):1-14.
    In photoreceptors of a dark adapted eye, the inward flux of sodium and calcium ions in the outer segment is balanced by the outward flux of potassium ions. But in the presence of light the creation of cyclic guanosine monophosphate in the outer segment decreases. Due to low concentration of cG the channels in the outer segment open relatively less and thus the influx of calcium ion decreases, leading finally to hyperpolarization of the photoreceptors. We have analyzed theoretically the effect (...)
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  31.  13
    Wind Turbines Make Waves: Why Some Residents Near Wind Turbines Become Ill.David Colling & Magda Havas - 2011 - Bulletin of Science, Technology and Society 31 (5):414-426.
    People who live near wind turbines complain of symptoms that include some combination of the following: difficulty sleeping, fatigue, depression, irritability, aggressiveness, cognitive dysfunction, chest pain/pressure, headaches, joint pain, skin irritations, nausea, dizziness, tinnitus, and stress. These symptoms have been attributed to the pressure (sound) waves that wind turbines generate in the form of noise and infrasound. However, wind turbines also generate electromagnetic waves in the form of poor power quality (dirty electricity) and ground current, and these can (...)
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  32.  39
    Are neocortical gamma waves related to consciousness?C. Vanderwolf - 2000 - Brain Research 855 (2):217-224.
  33.  57
    An Introduction to the Study of Wave Mechanics.Louis De Broglie - 1930 - London: Methuen & Co.. Edited by Flint, Henry Thomas & [From Old Catalog].
    Now, this is precisely the experimental law of the photo-electric effect in the form which has been verified in succession for all the radiations from the ultra ...
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  34.  14
    Meanings of Waves: Electroencephalography and Society in Mexico City, 1940–1950.Nuria Valverde Pérez - 2016 - Science in Context 29 (4):451-472.
    ArgumentThis paper focuses on the uses of electroencephalograms in Mexico during their introductory decade from 1940 to 1950. Following Borck, I argue that EEGs adapted to fit local circumstances and that this adjustment led to the consolidation of different ways of making science and the emergence of new objects of study and social types. I also maintain that the way EEGs were introduced into the institutional networks of Mexico entangled them in discussions about the objective and juridical definitions of social (...)
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  35. Dirac-Type Equations in a Gravitational Field, with Vector Wave Function.Mayeul Arminjon - 2008 - Foundations of Physics 38 (11):1020-1045.
    An analysis of the classical-quantum correspondence shows that it needs to identify a preferred class of coordinate systems, which defines a torsionless connection. One such class is that of the locally-geodesic systems, corresponding to the Levi-Civita connection. Another class, thus another connection, emerges if a preferred reference frame is available. From the classical Hamiltonian that rules geodesic motion, the correspondence yields two distinct Klein-Gordon equations and two distinct Dirac-type equations in a general metric, depending on the connection used. Each of (...)
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  36.  7
    On the process of Hertz's conversion to Hertzian waves.Manuel G. Doncel - 1991 - Archive for History of Exact Sciences 43 (1):1-27.
    This paper provides new elements for reconstructing Heinrich Hertz's conversion from an electrodynamic concept to a concept of field theory, a process that took place between September 1887 and February 1888. First of all, it is argued that, contrary to what one could deduce from Hertz's own presentation in his Untersuchungen (or Electric Waves), paper N∘ 5 was actually written after the first publication of papers N∘ 6 and N∘ 7; this fact is illuminated by Hertz's unpublished correspondence (...)
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  37.  37
    Geometry of dislocated de Broglie waves.P. R. Holland - 1987 - Foundations of Physics 17 (4):345-363.
    The geometrical structures implicit in the de Broglie waves associated with a relativistic charged scalar quantum mechanical particle in an external field are analyzed by employing the ray concept of the causal interpretation. It is shown how an osculating Finslerian metric tensor, a torsion tensor, and a tetrad field define respectively the strain, the dislocation density, and the Burgers vector in the “natural state” of the wave, which is a non-Riemannian space of distant parallelism. A quantum torque (...)
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  38.  10
    Ein Bild vor dem Bild? Die ältesten menschlichen Artefakte und die Frage des Bildes.Jean-Marie Le Tensorer - 2001 - In StephanHG Hauser (ed.), Homo Pictor. De Gruyter. pp. 57-75.
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  39.  78
    Erwin Schrödinger and the rise of wave mechanics. I. Schrödinger's scientific work before the creation of wave mechanics.Jagdish Mehra - 1987 - Foundations of Physics 17 (11):1051-1112.
    This article is in three parts. Part I gives an account of Erwin Schrödinger's growing up and studies in Vienna, his scientific work—first in Vienna from 1911 to 1920, then in Zurich from 1920 to 1925—on the dielectric properties of matter, atmospheric electricity and radioactivity, general relativity, color theory and physiological optics, and on kinetic theory and statistical mechanics. Part II deals with the creation of the theory of wave mechanics by Schrödinger in Zurich during the early months of 1926; (...)
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  40.  23
    Scientific Facts and Empirical Concepts: The Case of Electricity.Friedrich Steinle - 2010 - In Moritz Epple & Claus Zittel (eds.), Science as Cultural Practice: Vol. I: Cultures and Politics of Research From the Early Modern Period to the Age of Extremes. Berlin: Akademie Verlag. pp. 31-44.
    [First paragraph] A widespread image of science is founded upon a basic dichotomy: there are empirical facts, obtained by observation and experiment, on the one hand, and theories and explanations, obtained by reasoning, speculation and creativity, on the other. Whether scientific reasoning should take the inductive path, or the hypothetical-deductive approach, has long been a mat-ter of debate, but the basic dichotomist picture has been left untouched. And there is the concomitant idea that theories may come and go, while facts (...)
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  41.  19
    Merry Christmas!!!Canberra Olympic Pool, Iron Mountain, C. P. D. Law, Jim Berlis Electrical & Anthony Squires - forthcoming - Ethos: Journal of the Society for Psychological Anthropology.
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  42. List of Contents: Volume 16, Number 4, August 2003.Shigeki Matsutani, Yoshihiro Onishi & Wave-Particle Complementarity - 2004 - Foundations of Physics 34 (1).
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  43. List of Contents: Volume 11, Number 5, October 1998.S. Fujita, D. Nguyen, E. S. Nam, Phonon-Exchange Attraction, Type I. I. Superconductivity, Wave Cooper & Infinite Well - 1999 - Foundations of Physics 29 (1).
  44.  22
    A Relativistic Hidden-Variable Interpretation for the Massive Vector Field Based on Energy-Momentum Flows.George Horton & Chris Dewdney - 2010 - Foundations of Physics 40 (6):658-678.
    This paper is motivated by the desire to formulate a relativistically covariant hidden-variable particle trajectory interpretation of the quantum theory of the vector field that is formulated in such a way as to allow the inclusion of gravity. We present a methodology for calculating the flows of rest energy and a conserved density for the massive vector field using the time-like eigenvectors and eigenvalues of the stress-energy-momentum tensor. Such flows may be used to define particle trajectories which follow the (...)
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  45.  3
    Matter And Light - The New Physics.Louis de Broglie & Walter Henry Johnston - 1946 - Read Books.
    MATTER AND LIGHT The New Physics By LOUIS DE BROGLIE. Originally published in 1937. TRANSLATORS NOTE: THE Author has in certain places modified the original French text for the English translation, for the sake of greater cohesion, and has also revised some passages, in order to bring them into accord with the results of later research. Occasional Translators Notes are shown in square brackets. The chapter on The Undulatory Aspects of the Electron has the special historical interest of having been (...)
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  46.  16
    Bioclimatic Eco-Renovation Concept Design and Strategies. The Use of Different Materials.Klodjan Xhexhi - 2023 - In Ecovillages and Ecocities. Bioclimatic Applications from Tirana, Albania. Switzerland: Springer Nature Switzerland AG. pp. 191-224.
    The main bioclimatic passive strategies include optimization of the use of natural light, reducing the need for artificial light, maximizing the solar gain using thermal traps and promotion of natural ventilation in order to avoid the need for air conditioning for cooling. The usage of cool air passing through the underground tunnels located in the selected neighborhood in Tirana in order to enhance the cooling process is of huge importance. On the other hand, the building must benefit from the passive (...)
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  47.  25
    A New Fate of a Warped 5D FLRW Model with a U Scalar Gauge Field.Reinoud Jan Slagter & Supriya Pan - 2016 - Foundations of Physics 46 (9):1075-1089.
    If we live on the weak brane with zero effective cosmological constant in a warped 5D bulk spacetime, gravitational waves and brane fluctuations can be generated by a part of the 5D Weyl tensor and carries information of the gravitational field outside the brane. We consider on a cylindrical symmetric warped FLRW background a U self-gravitating scalar field coupled to a gauge field without bulk matter. It turns out that brane fluctuations can be formed dynamically, due to the (...)
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  48.  5
    Magnetic phase diagram of the ferromagnetic Kondo-lattice compound CeAgSb 2 up to 80 kbar.V. A. Sidorov, E. D. Bauer, N. A. Frederick, J. R. Jeffries, S. Nakatsuji, N. O. Moreno, J. D. Thompson, M. B. Maple & Z. Fisk - unknown
    Electrical resistivity and ac-calorimetric measurements reveal a complex magnetic phase diagram for single crystals of the ferromagnetic Kondo-lattice compound CeAgSb2 at high pressures up to 80 kbar. The ferromagnetic order at TC = 9.6 K at ambient pressure is completely suppressed at a critical pressure PC = 35 kbar. Another magnetic transition, possibly antiferromagnetic, found above 27 kbar, attains a maximum value TN 6 K at 44 kbar and then appears to be completely suppressed by 50 kbar. Thermodynamic and transport (...)
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  49.  36
    Heuristic viewpoint concerning the thermal ambience relative to an accelerated frame.Ulrich H. Gerlach - 1986 - Foundations of Physics 16 (7):667-677.
    A linear wave field in its Minkowski ground state is analyzed heuristically by two observers, one inertial, the other accelerating in a linear and uniform way. Relative to the accelerated observer, the zero-point oscillations of each Minkowski plane wave mode have an unusual Fourier spectrum. Its intensity is (i) the same for all plane wave modes, (ii) isotropic, and (iii) that of a thermal ambience (relative to the accelerated frame). The temperature of this ambience is given by the Davies-Unruh formula (...)
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  50. Fields, Particles, and Curvature: Foundations and Philosophical Aspects of Quantum Field Theory in Curved Spacetime.Aristidis Arageorgis - 1995 - Dissertation, University of Pittsburgh
    The physical, mathematical, and philosophical foundations of the quantum theory of free Bose fields in fixed general relativistic spacetimes are examined. It is argued that the theory is logically and mathematically consistent whereas semiclassical prescriptions for incorporating the back-reaction of the quantum field on the geometry lead to inconsistencies. Still, the relations and heuristic value of the semiclassical approach to canonical and covariant schemes of quantum gravity-plus-matter are assessed. Both conventional and rigorous formulations of the theory and of its principal (...)
     
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