Results for 'Relativistic mass invariance'

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  1. Equilibrium relativistic mass distribution for indistinguishable events.L. Burakovsky & L. P. Horwitz - 1995 - Foundations of Physics 25 (6):785-818.
    A manifestly covariant relativistic statistical mechanics of a system of N indistinguishable events with motion in space-time parametrized by an invariant “historical time” τ is considered. The relativistic mass distribution for such a system is obtained from the equilibrium solution of the generalized relativistic Boltzmann equation by integration over angular and hyperangular variables. All the characteristic averages are calculated. Expressions for the pressure and the energy density are found, and the relativistic equation of state is (...)
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  2.  43
    Review of invariant time formulations of relativistic quantum theories. [REVIEW]J. R. Fanchi - 1993 - Foundations of Physics 23 (3):487-548.
    The purpose of this paper is to review relativistic quantum theories with an invariant evolution parameter. Parametrized relativistic quantum theories (PRQT) have appeared under such names as constraint Hamiltonian dynamics, four-space formalism, indefinite mass, micrononcausal quantum theory, parametrized path integral formalism, relativistic dynamics, Schwinger proper time method, stochastic interpretation of quantum mechanics and stochastic quantization. The review focuses on the fundamental concepts underlying the theories. Similarities as well as differences are highlighted, and an extensive bibliography is (...)
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  3.  59
    On the interpretation of the relativistic quantum mechanics with invariant evolution parameter.Matej Pavšič - 1991 - Foundations of Physics 21 (9):1005-1019.
    The relativistic quantum mechanics with Lorentz-invariant evolution parameter and indefinite mass is a very elegant theory. But it cannot be derived by quantizing the usual classical relativity in which there is the mass-shell constraint. In this paper the classical theory is modified so that it remains Lorentz invariant, but the constraint disappears; mass is no longer fixed—it is an arbitrary constant of motion. The quantization of this unconstrained theory gives the relativistic quantum mechanics in which (...)
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  4.  33
    Relativistic frameworks and the case for (or against) incommensurability.Jean-Michel Delhôtel - 2018 - Synthese 195 (4):1569-1585.
    The aim of this paper is to address, from a fresh perspective, the question of whether Newtonian mechanics can legitimately be regarded as a limiting case of the special theory of relativity, or whether the two theories should be deemed so radically different as to be incommensurable in the sense of Feyerabend and Kuhn. Firstly, it is argued that focusing on the concept of mass and its transformation across the two varieties of mechanics is bound to leave the issue (...)
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  5.  35
    The Mass Operator and Neutrino Oscillations.John R. Fanchi - 1998 - Foundations of Physics 28 (10):1521-1528.
    Recent work in parametrized relativistic quantum theory (PRQT) has shown that oscillations between mass states are predicted by an alternative formulation of relativistic quantum theory that uses an invariant evolution parameter. A PRQT model of flavor transitions is compared to the standard model. The resulting PRQT expression for the probability of survival of an incident neutrino differs significantly from the standard neutrino oscillation model. Neutrino oscillation measurements provide an experimental testing ground for two theories that are based (...)
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  6. Relativistic Statistical Mechanics and Particle Spectroscopy.L. Burakovsky - 1998 - Foundations of Physics 28 (10):1577-1594.
    The formulation of manifestly covariant relativistic statistical mechanics as the description of an ensemble of events in spacetime parametrized by an invariant proper-time τ is reviewed. The linear and cubic mass spectra, which result from this formulation (the latter with the inclusion of anti-events) as the actual spectra of an individual hadronic multiplet and hot hadronic matter, respectively, are discussed. These spectra allow one to predict the masses of particles nucleated to quasi-levels in such an ensemble. As an (...)
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  7. Relativistic transformations of thermodynamic quantities.Noam Agmon - 1977 - Foundations of Physics 7 (5-6):331-339.
    A unique solution is proposed to the problem of how thermodynamic processes between thermodynamic systems at relative rest “appear” to a moving observer. Assuming only transformations for entropy, pressure, and volume and the invariance of the “fundamental thermodynamic equation,” one can derive transformations for (thermodynamic) energy and temperature. The invariance of the first and second laws entails transformations for work and heat. All thermodynamic relations become Lorentz-invariant. The transformations thus derived are in principle equivalent to those of Einstein (...)
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  8.  14
    Dual Relativistic Quantum Mechanics I.Tepper L. Gill, Gonzalo Ares de Parga, Trey Morris & Mamadou Wade - 2022 - Foundations of Physics 52 (4):1-21.
    It was shown in Dirac A117, 610; A118, 351, 1928) that the ultra-violet divergence in quantum electrodynamics is caused by a violation of the time-energy uncertainly relationship, due to the implicit assumption of infinitesimal time information. In Wheeler et al. it was shown that Einstein’s special theory of relativity and Maxwell’s field theory have mathematically equivalent dual versions. The dual versions arise from an identity relating observer time to proper time as a contact transformation on configuration space, which leaves phase (...)
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  9.  11
    Proving the Lorentz Invariance of the Entropy and the Covariance of Thermodynamics.L. Gavassino - 2021 - Foundations of Physics 52 (1):1-22.
    The standard argument for the Lorentz invariance of the thermodynamic entropy in equilibrium is based on the assumption that it is possible to perform an adiabatic transformation whose only outcome is to accelerate a macroscopic body, keeping its rest mass unchanged. The validity of this assumption constitutes the very foundation of relativistic thermodynamics and needs to be tested in greater detail. We show that, indeed, such a transformation is always possible, at least in principle. The only two (...)
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  10.  32
    Higher-Order Kinetic Term for Controlling Photon Mass in Off-Shell Electrodynamics.Martin Land - 2003 - Foundations of Physics 33 (8):1157-1175.
    In relativistic classical and quantum mechanics with Poincaré-invariant parameter, particle worldlines are traced out by the evolution of spacetime events. The formulation of a covariant canonical framework for the evolving events leads to a dynamical theory in which mass conservation is demoted from a priori constraint to the status of conserved Noether current for a certain class of interactions. In pre-Maxwell electrodynamics—the local gauge theory associated with this framework —events induce five local off-shell fields, which mediate interactions between (...)
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  11.  81
    Local Fields Without Restrictions on the Spectrum of 4-Momentum Operator and Relativistic Lindblad Equation.M. A. Kurkov & V. A. Franke - 2011 - Foundations of Physics 41 (5):820-842.
    Quantum theory of Lorentz invariant local scalar fields without restrictions on 4-momentum spectrum is considered. The mass spectrum may be both discrete and continues and the square of mass as well as the energy may be positive or negative. One may assume the existence of such fields only if they interact with ordinary fields very weakly. Generalization of Kallen-Lehmann representation for propagators of these fields is found. The considered generalized fields may violate CPT-invariance. Restrictions on mass-spectrum (...)
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  12.  70
    Blackbody Radiation and the Scaling Symmetry of Relativistic Classical Electron Theory with Classical Electromagnetic Zero-Point Radiation.Timothy H. Boyer - 2010 - Foundations of Physics 40 (8):1102-1116.
    It is pointed out that relativistic classical electron theory with classical electromagnetic zero-point radiation has a scaling symmetry which is suitable for understanding the equilibrium behavior of classical thermal radiation at a spectrum other than the Rayleigh-Jeans spectrum. In relativistic classical electron theory, the masses of the particles are the only scale-giving parameters associated with mechanics while the action-angle variables are scale invariant. The theory thus separates the interaction of the action variables of matter and radiation from the (...)
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  13.  54
    Selection rules for dipole radiation from a relativistic bound state.M. C. Land, R. I. Arshansky & L. P. Horwitz - 1994 - Foundations of Physics 24 (4):563-578.
    Recently, in the framework of a relativistic quantum theory with invariant evolution parameter, solutions have been found for the two-body bound state, whose mass spectrum agrees with the nonrelativistic Schrödinger energy spectrum. In this paper, we study the radiative transitions of these states in the dipole approximation and find that the selection rules are identical with those of the usual nonrelativistic theory, expressed in a manifestly covariant form. In addition to the transverse and longitudinal polarizations of the nonrelativistic (...)
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  14. Relativistic mass distribution in event-anti-event system and “realistic” equation of state for hot hadronic matter.L. Burakovsky & L. P. Horwitz - 1995 - Foundations of Physics 25 (8):1127-1146.
    We find the equation of state p, ρ ∫ T 6,which gives the value of the sound velocity c 27 = 0.20,in agreement with the “realistic” equation of state for hot hadronic matter suggested by Shuryak, in the framework of a covariant relativistic statistical mechanics of an event-anti-event system with small chemical and mass potentials. The relativistic mass distribution for such a system is obtained and shown to be a good candidate for fitting hadronic resonances, in (...)
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  15.  14
    On Relativistic Mass.Vesselin Petkov - unknown
    Despite "what has probably been the most vigorous campaign ever waged against the concept of relativistic mass" p. 51) it is argued that the relativistic increase of the mass is an experimental fact.
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  16.  53
    Relativistic mass distribution in event-anti-event system and {openquotes} realistic {closequotes} equation of state for hot hadronic matter.L. Burakovsky & L. P. Horwitz - 1995 - Foundations of Physics 25 (8):1127-1146.
  17.  83
    Incommensurabilidad y relatividad. Una revisión de la tesis de Thomas Kuhn.Andrés Rivadulla - 2003 - Revista de Filosofía (Madrid) 28 (2):237-259.
    The aim of this paper is to discuss the philosophical viability of the incommensurability doctrine. In particular I am going to analyse the thesis that changes in meaning of the terms shared by competing theories after a scientific revolution imply reference changes as well. The idea that terms change radically their meanings will be discussed, and the alleged incommensurability of mass will be criticized in detail. Relativity theory, which has provided most of the characteristic examples of incommensurability, becomes also (...)
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  18. CPT Invariance, the Spin-Statistics Connection, and the Ontology of Relativistic Quantum Field Theories.Jonathan Bain - 2013 - Erkenntnis 78 (4):797-821.
    CPT invariance and the spin-statistics connection are typically taken to be essential properties in relativistic quantum field theories (RQFTs), insofar as the CPT and Spin-Statistics theorems entail that any state of a physical system characterized by an RQFT must possess these properties. Moreover, in the physics literature, they are typically taken to be properties of particles. But there is a Received View among philosophers that RQFTs cannot fundamentally be about particles. This essay considers what proofs of the CPT (...)
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  19.  53
    A Re-interpretation of the Concept of Mass and of the Relativistic Mass-Energy Relation.Stefano Re Fiorentin - 2009 - Foundations of Physics 39 (12):1394-1406.
    For over a century the definitions of mass and derivations of its relation with energy continue to be elaborated, demonstrating that the concept of mass is still not satisfactorily understood. The aim of this study is to show that, starting from the properties of Minkowski spacetime and from the principle of least action, energy expresses the property of inertia of a body. This implies that inertial mass can only be the object of a definition—the so called (...)-energy relation—aimed at measuring energy in different units, more suitable to describe the huge amount of it enclosed in what we call the “rest-energy” of a body. Likewise, the concept of gravitational mass becomes unnecessary, being replaceable by energy, thus making the weak equivalence principle intrinsically verified. In dealing with mass, a new unit of measurement is foretold for it, which relies on the de Broglie frequency of atoms, the value of which can today be measured with an accuracy of a few parts in 109. (shrink)
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  20.  66
    Elisabeth Ströker: Wissenschaftsphilosophische Studien. Vittorio Klostermann. Frankfurt am Main, 1989. 64 pp + VIII. [REVIEW]Andrés Rivadulla - 1990 - Revista de Filosofía (Madrid) 4 (2):277.
    The aim of this paper is to discuss the philosophical viability of the incommensurability doctrine. In particular I am going to analyse the thesis that changes in meaning of the terms shared by competing theories after a scientific revolution imply reference changes as well. The idea that terms change radically their meanings will be discussed, and the alleged incommensurability of mass will be criticized in detail. Relativity theory, which has provided most of the characteristic examples of incommensurability, becomes also (...)
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  21. Relativistic Invariance and Modal Interpretations.John Earman & Laura Ruetsche - 2005 - Philosophy of Science 72 (4):557-583.
    A number of arguments have been given to show that the modal interpretation of ordinary nonrelativistic quantum mechanics cannot be consistently extended to the relativistic setting. We find these arguments inconclusive. However, there is a prima facie reason to think that a tension exists between the modal interpretation and relativistic invariance; namely, the best candidate for a modal interpretation adapted to relativistic quantum field theory, a prescription due to Rob Clifton, comes out trivial when applied to (...)
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  22.  34
    Lorentz Invariant Berry Phase for a Perturbed Relativistic Four Dimensional Harmonic Oscillator.Yossi Bachar, Rafael I. Arshansky, Lawrence P. Horwitz & Igal Aharonovich - 2014 - Foundations of Physics 44 (11):1156-1167.
    We show the existence of Lorentz invariant Berry phases generated, in the Stueckelberg–Horwitz–Piron manifestly covariant quantum theory (SHP), by a perturbed four dimensional harmonic oscillator. These phases are associated with a fractional perturbation of the azimuthal symmetry of the oscillator. They are computed numerically by using time independent perturbation theory and the definition of the Berry phase generalized to the framework of SHP relativistic quantum theory.
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  23.  84
    The Relativistic Invariance of 4D Shapes.Claudio Calosi - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 50:1-4.
  24. Invariance and ontology in relativistic physics.Hans Halvorson - manuscript
    Some philosophers say that in special relativity, four-dimensional stuff is invariant in some sense that three-dimensional stuff is not. I show that this claim is false.
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  25.  40
    Galilei invariance, action-reaction principle, and center of mass theorem.Hans-Jürgen Treder - 1983 - Foundations of Physics 13 (1):153-160.
    The Galilei invariance of classical dynamics does not automatically imply the third Newtonian axiom and the center of mass theorem. For the deduction of these theorems from Galilei invariance we must have, generally, a “kinematical potential” (Helmholtz) and a “potential function” (Clausius), respectively. In celestial mechanics it is possible to have conservation of the motion of the center of gravity but not of the mass center. In this case, the active and the passive masses are different (...)
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  26. The relativistic invariance of 4D-shapes.Claudio Calosi - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 50:1--4.
     
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  27.  36
    Relativistic Notion of Mass and a Resolution of a Conflict Between Schopenhauer and Hegel.L. P. Horwitz & Ari Belenkiy - 2002 - Foundations of Physics 32 (6):963-979.
    We discuss a mass change that has its origin in the action of forces on an object. This phenomenon, well-known in the context of quantum field theory (mass renormalization), can be discussed systematically in both classical and quantum mechanics in a framework given by Stückelberg. We employ this framework to resolve an interesting conflict of opinions between Schopenhauer and Hegel in the mid-19th century. We show that Hegel, Kant, and Schopenhauer demonstrated remarkable prescience in their views as seen (...)
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  28. Existence Is Not Relativistically Invariant—Part 1: Meta-ontology.Florian Marion - 2024 - Acta Analytica 39:1-25.
    Metaphysicians who are aware of modern physics usually follow Putnam (1967) in arguing that Special Theory of Relativity is incompatible with the view that what exists is only what exists now or presently. Partisans of presentism (the motto ‘only present things exist’) had very difficult times since, and no presentist theory of time seems to have been able to satisfactorily counter the objection raised from Special Relativity. One of the strategies offered to the presentist consists in relativizing existence to inertial (...)
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  29.  92
    Mass, matter, and energy. A relativistic approach.Eftichios Bitsakis - 1991 - Foundations of Physics 21 (1):63-81.
    The debate concerning the relations between matter and motion has the same age as philosophy itself. In modern times this problem was transformed into the one concerning the relations between mass and energy. Newton identified mass with matter. Classical thermodynamics brought this conception to its logical conclusion, establishing an ontic dichotomy between mass-matter and energy. On the basis of this pre-relativistic conception, Einstein's famous equation has been interpreted as a relation of equivalence between mass-matter and (...)
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  30. Universal Invariance: A Novel View of Relativistic Physics.T. E. Phipps Jr - 2008 - Apeiron: Studies in Infinite Nature 15 (4):481.
     
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  31.  6
    Anisotropic mass, bimetric theory, and Lorentz invariance.Dierck-E. Liebscher - 2000 - In M. Scherfner, T. Chrobok & M. Shefaat (eds.), Colloquium on Cosmic Rotation. Wissenschaft Und Technik Verlag. pp. 1--167.
  32.  28
    Relativistic interpretation (with non-zero photon mass) of the small ether drift velocity detected by Michelson, Morley and Miller.J. P. Vigier - 1997 - Apeiron 4 (2-3):71-76.
  33. Classical and Non-relativistic Limits of a Lorentz-Invariant Bohmian Model for a System of Spinless Particles.Sergio Hernández-Zapata & Ernesto Hernández-Zapata - 2010 - Foundations of Physics 40 (5):532-544.
    A completely Lorentz-invariant Bohmian model has been proposed recently for the case of a system of non-interacting spinless particles, obeying Klein-Gordon equations. It is based on a multi-temporal formalism and on the idea of treating the squared norm of the wave function as a space-time probability density. The particle’s configurations evolve in space-time in terms of a parameter σ with dimensions of time. In this work this model is further analyzed and extended to the case of an interaction with an (...)
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  34.  94
    The non-relativistic limits of the Maxwell and Dirac equations: the role of Galilean and gauge invariance.Peter Holland & Harvey R. Brown - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (2):161-187.
    The aim of this paper is to illustrate four properties of the non-relativistic limits of relativistic theories: that a massless relativistic field may have a meaningful non-relativistic limt, that a relativistic field may have more than one non-relativistic limit, that coupled relativistic systems may be "more relativistic" than their uncoupled counterparts, and that the properties of the non-relativistic limit of a dynamical equation may differ from those obtained when the limiting equation (...)
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  35.  88
    Broken Weyl Invariance and the Origin of Mass.W. Drechsler & H. Tann - 1999 - Foundations of Physics 29 (7):1023-1064.
    A massless Weyl-invariant dynamics of a scalar, a Dirac spinor, and electromagnetic fields is formulated in a Weyl space, W4, allowing for conformal rescalings of the metric and of all fields with nontrivial Weyl weight together with the associated transformations of the Weyl vector fields κμ, representing the D(1) gauge fields, with D(1) denoting the dilatation group. To study the appearance of nonzero masses in the theory the Weyl symmetry is broken explicitly and the corresponding reduction of the Weyl space (...)
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  36.  26
    On the relativistic invariance of a quantum theory based on beables.D. Bohm & B. J. Hiley - 1991 - Foundations of Physics 21 (2):243-250.
    We discuss the question of the relativistic invariance of a quantum theory based on beables, and we suggest the general outlines of one possible form of such a theory.
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  37.  57
    The classical and relativistic concepts of mass.Erik Eriksen & Kjell Vøyenli - 1976 - Foundations of Physics 6 (1):115-124.
    An elementary presentation is given of classical and relativistic collision dynamics based upon the principle of conservation of momentum. The concepts of mass are shown to be implicitly defined and their basic properties are rigorously derived and discussed. Luxons and tachyons are treated on the same footing as material particles.
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  38. A Classical and Quantum Relativistic Interacting Variable-Mass Model.D. C. Salisbury - 1998 - Foundations of Physics 28 (9):1433-1442.
    A classical and quantum relativistic interacting particle formalism is revisited. A Hilbert space is achieved through the use of variable individual particle rest masses, but no c-number mass parameter is required for the relativistic free particle. Boosted center of momentum states feature in both the free and interacting model. The implications of a failure to impose simultaneity conditions at the classical level are explored. The implementation of these conditions at the quantum level leads to a finite uncertainty (...)
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  39.  4
    A Classical and Quantum Relativistic Interacting Variable-Mass Model.D. C. Salisbury - 1998 - Foundations of Physics 28 (9):1433-1442.
    A classical and quantum relativistic interacting particle formalism is revisited. A Hilbert space is achieved through the use of variable individual particle rest masses, but no c-number mass parameter is required for the relativistic free particle. Boosted center of momentum states feature in both the free and interacting model. The implications of a failure to impose simultaneity conditions at the classical level are explored. The implementation of these conditions at the quantum level leads to a finite uncertainty (...)
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  40. Moral knowledge and mass crime: A critical reading of moral relativism.Nenad Dimitrijevic - 2010 - Philosophy and Social Criticism 36 (2):131-156.
    In this article I ask how moral relativism applies to the analysis of responsibility for mass crime. The focus is on the critical reading of two influential relativist attempts to offer a theoretically consistent response to the challenges imposed by extreme criminal practices. First, I explore Gilbert Harman’s analytical effort to conceptualize the reach of moral discourse. According to Harman, mass crime creates a contextually specific relationship to which moral judgments do not apply any more. Second, I analyze (...)
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  41.  49
    Manifestly Covariant Quantum Theory with Invariant Evolution Parameter in Relativistic Dynamics.John R. Fanchi - 2011 - Foundations of Physics 41 (1):4-32.
    Manifestly covariant quantum theory with invariant evolution parameter is a parametrized relativistic dynamical theory. The study of parameterized relativistic dynamics (PRD) helps us understand the consequences of changing key assumptions of quantum field theory (QFT). QFT has been very successful at explaining physical observations and is the basis of the conventional paradigm, which includes the Standard Model of electroweak and strong interactions. Despite its record of success, some phenomena are anomalies that may require a modification of the Standard (...)
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  42.  66
    Derivation of the Dirac Equation by Conformal Differential Geometry.Enrico Santamato & Francesco De Martini - 2013 - Foundations of Physics 43 (5):631-641.
    A rigorous ab initio derivation of the (square of) Dirac’s equation for a particle with spin is presented. The Lagrangian of the classical relativistic spherical top is modified so to render it invariant with respect conformal changes of the metric of the top configuration space. The conformal invariance is achieved by replacing the particle mass in the Lagrangian with the conformal Weyl scalar curvature. The Hamilton-Jacobi equation for the particle is found to be linearized, exactly and in (...)
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  43. Moral relativism.Steven Lukes - 2008 - New York: Picador.
    Moral relativism attracts and repels. What is defensible in it and what is to be rejected? Do we as human beings have no shared standards by which we can understand one another? Can we abstain from judging one another's practices? Do we truly have divergent views about what constitutes good and evil, virtue and vice, harm and welfare, dignity and humiliation, or is there some underlying commonality that trumps it all? These questions turn up everywhere, from Montaigne's essay on cannibals, (...)
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  44. Light-speed constancy versus light-speed invariance in the derivation of relativistic kinematics.Harvey R. Brown & Adolfo Maia - 1993 - British Journal for the Philosophy of Science 44 (3):381-407.
    It is still perhaps not widely appreciated that in 1905 Einstein used his postulate concerning the ‘constancy’ of the light-speed in the ‘resting’ frame, in conjunction with the principle of relativity, to derive numerical light-speed invariance. Now a ‘weak’ version of the relativity principle (or, alternatively, appeal to the Michelson—Morley experiment) leads from Einstein's light postulate to a condition that we call universal light-speed constancy. which is weaker than light-speed invariance. It follows from earlier independent investigations (Robertson [1949]; (...)
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  45.  12
    A 4*4 Schroedinger equation from relativistic total energy with a 2*2 Lorentz invariant solution.Han Geurdes - 2018 - High Energy Density Physics 26:10.1016/j.hedp.2017.12.004.
    Abstract In this paper an algebraic method is presented to derive a 4 × 4 Hermitian Schrödinger equation from with and . The latter operator replacement is a common procedure in a quantum description of the total energy. In the derivation we don’t make use of Dirac’s method of four vectors. Moreover, the root operator isn’t squared either. Instead, use is made of the algebra of operators to derive a Hermitian matrix Schrödinger equation. We believe that new physics can be (...)
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  46.  31
    Pragmatists and Purists on CPT Invariance in Relativistic Quantum Field Theories.Jonathan Bain - unknown
    Philosophers of physics are split on whether foundational issues in relativistic quantum field theory should be framed within pragmatist approaches, which trade mathematical rigor for the ability to formulate non-trivial interacting models, or purist approaches, which trade the ability to formulate non-trivial interacting models for mathematical rigor. This essay addresses this debate by viewing it through the lens of the CPT theorem. I first consider two formulations of the CPT theorem, one purist and the other pragmatist, and extract from (...)
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  47.  18
    The Binge Eating Scale: Structural Equation Competitive Models, Invariance Measurement Between Sexes, and Relationships With Food Addiction, Impulsivity, Binge Drinking, and Body Mass Index.Tamara Escrivá-Martínez, Laura Galiana, Marta Rodríguez-Arias & Rosa M. Baños - 2019 - Frontiers in Psychology 10.
    Introduction: The Binge Eating Scale (BES) is a widely-used self-report questionnaire to identify compulsive eaters. However, research on the dimensions and psychometric properties of the BES is limited. Objective: The aim of this study was to examine the properties of the Spanish version of the BES. Method: Confirmatory Factor Analyses (CFAs) were carried out to verify the BES factor structure in a sample of Spanish college students (N = 428, 75.7% women; age range = 18–30). An invariance measurement routine (...)
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  48.  53
    Book ReviewsRobert. Nozick, Invariances: The Structure of the Objective World.Cambridge, Mass.: Harvard University Press, 2001. Pp. x+416. $35.00. [REVIEW]Philip Kitcher - 2004 - Ethics 114 (2):364-368.
  49.  39
    On the Bose-Einstein condensation of free relativistic bosons with or without mass.S. Fujita, T. Kimura & Y. Zheng - 1991 - Foundations of Physics 21 (9):1117-1130.
    The Bose-Einstein condensation of free relativistic particles [ε=(M 2 c 4 +c 2 p 2 ) 1/2 −Mc 2 ] is studied rigorously. For massless bosons (ε=cp), the condensation transition of third (second) order occurs in2 (3) dimensions (D). The molar heat capacity follows the T 2 (T 3 ) law below the condensation temperature Tc [k B Tc=(2πħ 2 c 2 n/1.645) 1/2 [(π 2 ħ 3 c 3 n/1.202) 1/3 ], reaches4.38 (10.8) R at T=Tc, and approaches (...)
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  50.  55
    The Mass of the Gravitational Field.Charles T. Sebens - 2022 - British Journal for the Philosophy of Science 73 (1):211-248.
    By mass-energy equivalence, the gravitational field has a relativistic mass density proportional to its energy density. I seek to better understand this mass of the gravitational field by asking whether it plays three traditional roles of mass: the role in conservation of mass, the inertial role, and the role as source for gravitation. The difficult case of general relativity is compared to the more straightforward cases of Newtonian gravity and electromagnetism by way of gravitoelectromagnetism, (...)
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