Results for 'Lorentz Coefficient'

982 found
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  1.  32
    A simulation study for the distribution law of relative moments of evolution.Lorentz Jäntschi, Sorana D. Bolboacă & Radu E. Sestraş - 2012 - Complexity 17 (6):52-63.
    Nine selection‐survival strategies were implemented in a genetic algorithm experiment, and differences in terms of evolution were assessed. The moments of evolution (expressed as generation numbers) were recorded in a contingency of three strategies (i.e., proportional, tournament, and deterministic) for two moments (i.e., selection for crossover and mutation and survival for replacement). The experiment was conducted for the first 20,000 generations in 46 independent runs. The relative moments of evolution (where evolution was defined as a significant increase in the determination (...)
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  2.  96
    Killing Symmetries of Generalized Minkowski Spaces. I. Algebraic-Infinitesimal Structure of Spacetime Rotation Groups.Fabio Cardone, Alessio Marrani & Roberto Mignani - 2004 - Foundations of Physics 34 (4):617-641.
    In this paper, we introduce the concept of N-dimensional generalized Minkowski space, i.e., a space endowed with a metric tensor, whose coefficients do depend on a set of non-metrical coordinates. This is the first of a series of papers devoted to the investigation of the Killing symmetries of generalized Minkowski spaces. In particular, we discuss here the infinitesimal-algebraic structure of the space-time rotations in such spaces. It is shown that the maximal Killing group of these spaces is the direct product (...)
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  3.  62
    Super-Luminal Effects for Finsler Branes as a Way to Preserve the Paradigm of Relativity Theories.Sergiu I. Vacaru - 2013 - Foundations of Physics 43 (6):719-732.
    Using Finsler brane solutions [see details and methods in: S. Vacaru, Class. Quant. Grav. 28:215001, 2011], we show that neutrinos may surpass the speed of light in vacuum which can be explained by trapping effects from gravity theories on eight dimensional (co) tangent bundles on Lorentzian manifolds to spacetimes in general and special relativity. In nonholonomic variables, the bulk gravity is described by Finsler modifications depending on velocity/momentum coordinates. Possible super-luminal phenomena are determined by the width of locally anisotropic brane (...)
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  4. Killing Symmetries of Generalized Minkowski Spaces. Part 2: Finite Structure of Space–Time Rotation Groups in Four Dimensions.Fabio Cardone, Alessio Marrani & Roberto Mignani - 2004 - Foundations of Physics 34 (8):1155-1201.
    In this paper, we continue the study of the Killing symmetries of an N-dimensional generalized Minkowski space, i.e., a space endowed with a metric tensor, whose coefficients do depend on a set of non-metrical coordinates. We discuss here the finite structure of the space–time rotations in such spaces, by confining ourselves to the four-dimensional case. In particular, the results obtained are specialized to the case of a “deformed” Minkowski space M_4, for which we derive the explicit general form of the (...)
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  5.  46
    A Review About Invariance Induced Gravity: Gravity and Spin from Local Conformal-Affine Symmetry. [REVIEW]S. Capozziello & M. De Laurentis - 2010 - Foundations of Physics 40 (7):867-899.
    In this review paper, we discuss how gravity and spin can be obtained as the realization of the local Conformal-Affine group of symmetry transformations. In particular, we show how gravitation is a gauge theory which can be obtained starting from some local invariance as the Poincaré local symmetry. We review previous results where the inhomogeneous connection coefficients, transforming under the Lorentz group, give rise to gravitational gauge potentials which can be used to define covariant derivatives accommodating minimal couplings of (...)
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  6.  8
    The principle of relativity.Hendrik Antoon Lorentz - 1923 - London,: Methuen & Co.. Edited by Albert Einstein, H. Minkowski, Hermann Weyl, Arnold Sommerfeld, W. Perrett & G. B. Jeffery.
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  7.  36
    Disentangling Genuine Semantic Stroop Effects in Reading from Contingency Effects: On the Need for Two Neutral Baselines.Eric Lorentz, Tessa McKibben, Chelsea Ekstrand, Layla Gould, Kathryn Anton & Ron Borowsky - 2016 - Frontiers in Psychology 7.
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  8. Ueber die Aufstellung von Postulaten als Philosophische Methode bei Kant.P. Lorentz - 1894 - Philosophical Review 3:357.
     
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  9.  41
    Note on the History of the FitzGerald-Lorentz Contraction.Stephen Brush, H. Lorentz & George Fitzgerald - 1967 - Isis 58 (2):230-232.
  10. Metrology and Monitoring of Environment (in Romanian).Lorentz Jantschi - forthcoming - Scientia.
     
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  11.  12
    (2 other versions)Das Relativitätsprinzip.H. A. Lorentz - 1914 - Darmstadt,: Wissenschaftliche Buchgesellschaft. Edited by Albert Einstein & H. Minkowski.
    This is a reproduction of the original artefact. Generally these books are created from careful scans of the original. This allows us to preserve the book accurately and present it in the way the author intended. Since the original versions are generally quite old, there may occasionally be certain imperfections within these reproductions. We're happy to make these classics available again for future generations to enjoy!
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  12.  24
    Distribution on Contingency of Alignment of Two Literal Sequences Under Constrains.Sorana D. Bolboacă & Lorentz Jäntschi - 2014 - Acta Biotheoretica 63 (1):55-69.
    The case of ungapped alignment of two literal sequences under constrains is considered. The analysis lead to general formulas for probability mass function and cumulative distribution function for the general case of using an alphabet with a chosen number of letters in the expression of the literal sequences. Formulas for three statistics including mean, mode, and standard deviation were obtained. Distributions are depicted for three important particular cases: alignment on binary sequences, alignment of trinomial series, and alignment of genetic sequences. (...)
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  13. The gravitational force between mechanics and electrodynamics.Jurgen Renn, Jonathan Zenneck, Hendrik A. Lorentz, Immanuel Friedlaender & August FÖPPL - 2007 - Boston Studies in the Philosophy of Science 250.
  14.  11
    Comparação entre as eletrodinamicas de.Weber E. de Maxwell-Lorentz - 1998 - Episteme 3 (6):7-15.
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  15.  25
    fMRI Reveals Abnormal Attentional Networks in People with Migraine Headache in Between Headache Attacks.Mickleborough Marla, Gould Layla, Ekstrand Chelsea, Lorentz Eric, Babyn Paul & Borowsky Ron - 2015 - Frontiers in Human Neuroscience 9.
  16. List of Contents: Volume 17, Number 1, February 2004.P. Caban, M. Forys, J. Rembielinski, Lorentz-Covariant Canonical, Gennaro Auletta, Gino Tarozzi & Wavelike Correlations Versus Path - 2004 - Foundations of Physics 34 (4).
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  17.  31
    Lorentz-Invariant, Retrocausal, and Deterministic Hidden Variables.Aurélien Drezet - 2019 - Foundations of Physics 49 (10):1166-1199.
    We review several no-go theorems attributed to Gisin and Hardy, Conway and Kochen purporting the impossibility of Lorentz-invariant deterministic hidden-variable model for explaining quantum nonlocality. Those theorems claim that the only known solution to escape the conclusions is either to accept a preferred reference frame or to abandon the hidden-variable program altogether. Here we present a different alternative based on a foliation dependent framework adapted to deterministic hidden variables. We analyse the impact of such an approach on Bohmian mechanics (...)
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  18.  43
    A Lorentz-invariant clock.Richard Schlegel - 1977 - Foundations of Physics 7 (3-4):245-253.
    Relative distance and velocity magnitudes between two arbitrarily moving particles are independent of an observer's reference frame, and may be used to construct theoretically a clock whose rate is Lorentz-invariant. This result is in accord with the principle of relativity, using the interaction interpretation: Relativistic changes arise in association with momentum-energy transfer, rather than in consequence of velocity-induced changes in measuring clocks and rods.
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  19.  17
    Lorentz Invariant State Reduction, and Localization.Gordon N. Fleming - 1988 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988:112-126.
    In this paper I will present conceptions of state reduction and particle and/or system localization which render these subjects fully compatible with the general requirements of a relativistic, i.e. Lorentz invariant, quantum theory. The approach consists of a systematic generalization of the concepts of initial data assignment at definite times, initiation and completion of measurements at definite times, and dynamical evolution as time dependence, to the concepts of initial data assignment on arbitrary space-like hyperplanes, initiation and completion of measurements (...)
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  20.  53
    The Lorentz-Formulae and the Metrical Principle.Håkan Törnebohm - 1962 - Philosophy of Science 29 (3):269 - 278.
    The Lorentz-formulae are deduced from three factual statements the physical meaning of which is explained in terms of operations with clocks, light-signals and measuring rods. These statements are: (1) The time-length of a process is invariant. (2) The velocity of light is the same in all inertial systems. (3) The velocity of light is independent of the source. It is also shown that these statements can be deduced from the Lorentz-formulae. They are the physical content of the latter. (...)
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  21. Lorentz contraction, Bell’s spaceships and rigid body motion in special relativity.Jerrold Franklin - 2010 - European Journal of Physics 31:291-298.
    The meaning of Lorentz contraction in special relativity and its connection with Bell’s spaceships parable is discussed. The motion of Bell’s spaceships is then compared with the accelerated motion of a rigid body. We have tried to write this in a simple form that could be used to correct students’ misconceptions due to conflicting earlier treatments.
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  22.  64
    Correlation coefficients and Robertson-Schroedinger uncertainty relations.Gordon N. Fleming - unknown
    Calling the quantity; 2ΔAΔB/|<[A, B]>|, with non-zero denominator, the uncertainty product ratio or UPR for the pair of observables, (A, B), it is shown that any non-zero correlation coefficient between two observables raises, above unity, the lower bound of the UPR for each member of an infinite collection of pairs of incompatible observables. Conversely, any UPR is subject to lower bounds above unity determined by each of an infinite collection of correlation coefficients. This result generalizes the well known Schroedinger (...)
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  23.  30
    Lorentz Invariance and the retarded Bohm Model.Steve Mackman & Euan Squires - 1995 - Foundations of Physics 25 (2):391-397.
    We show how a recently introduced retarded version of the Bohm Model evades the Hardy proof that hidden-variable models must violate Lorentz Invariance. We also discuss a possible test of such models.
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  24.  44
    On lorentz's methodology.Arthur I. Miller - 1974 - British Journal for the Philosophy of Science 25 (1):29-45.
  25.  27
    The Lorentz Transformation in a Fishbowl: A Comment on Cheng and Read’s “Why Not a Sound Postulate?”.Daniel Shanahan - 2023 - Foundations of Physics 53 (3):1-22.
    In support of their contention that it is the absence of a subsisting medium that imbues the speed of light with fundamentality, Bryan Cheng and James Read discuss certain “fishbowl universes” in which physical influences evolve, not at the speed of light, but that of sound. The Lorentz transformation simulated in these sonic universes, which the authors cite from the literature of analogue gravity, is not that of Einstein, for whom an aether was “superfluous”, but that of the earlier (...)
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  26.  74
    The lorentz transformation group of the special theory of relativity without Einstein's isotropy convention.Abraham Ungar - 1986 - Philosophy of Science 53 (3):395-402.
    Inertial frames and Lorentz transformations have a preferred status in the special theory of relativity (STR). Lorentz transformations, in turn, embody Einstein's convention that the velocity of light is isotropic, a convention that is necessary for the establishment of a standard signal synchrony. If the preferred status of Lorentz transformations in STR is not due to some particular bias introduced by a convention on signal synchronism, but to the fact that the Lorentz transformation group is the (...)
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  27.  63
    Is algebraic lorentz-covariant quantum field theory stochastic Einstein local?F. A. Muller & Jeremy Butterfield - 1994 - Philosophy of Science 61 (3):457-474.
    The general context of this paper is the locality problem in quantum theory. In a recent issue of this journal, Redei (1991) offered a proof of the proposition that algebraic Lorentz-covariant quantum field theory is past stochastic Einstein local. We show that Redei's proof is either spurious or circular, and that it contains two deductive fallacies. Furthermore, we prove that the mentioned theory meets the stronger condition of stochastic Haag locality.
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  28.  49
    Lorentz deformation and the jet phenomenon. II. Explanation of the nearly constant average jet transverse momentum.S. H. Oh, Y. S. Kim & Marilyn E. Noz - 1980 - Foundations of Physics 10 (7-8):635-639.
    It is shown that the jet mechanism derivable from the Lorentz deformation picture leads to a nearly constant average jet transverse momentum. It is pointed out that this is consistent with the high-energy experimental data. It is pointed out further that this result strengthens the physical basis for the minimal time-energy uncertainty combined covariantly with Heisenberg's space-momentum uncertainty relation.
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  29. Correlation Coefficient Measures of Interval Bipolar Neutrosophic Sets for Solving Multi-Attribute Decision Making Problems.Surapati Pramanik, Dey Partha Pratim & Florentin Smarandache - 2018 - Neutrosophic Sets and Systems 19:70-79.
    Interval bipolar neutrosophic set is a significant extension of interval neutrosophic set where every element of the set comprises of three independent positive membership functions and three independent negative membership functions. In this study, we first define correlation coefficient, and weighted correlation coefficient measures of interval bipolar neutrosophic sets and prove their basic properties. Then, we develop a new multi-attribute decision making strategy based on the proposed weighted correlation coefficient measure. Finally, we solve an investment problem with (...)
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  30.  89
    A Modified Lorentz-Transformation–Based Gravity Model Confirming Basic GRT Experiments.Jan Broekaert - 2005 - Foundations of Physics 35 (5):839-864.
    Implementing Poincaré’s geometric conventionalism a scalar Lorentz-covariant gravity model is obtained based on gravitationally modified Lorentz transformations (or GMLT). The modification essentially consists of an appropriate space-time and momentum-energy scaling (“normalization”) relative to a nondynamical flat background geometry according to an isotropic, nonsingular gravitational affecting function Φ(r). Elimination of the gravitationally unaffected S 0 perspective by local composition of space–time GMLT recovers the local Minkowskian metric and thus preserves the invariance of the locally observed velocity of light. The (...)
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  31. The non-invariant time and Lorentz-like transformations.Boris Culina - 2025 - Revista Brasileira de Ensino de Física 47:1-7.
    From the comparison of time in inertial frames, possible types of transformations between inertial frames are deduced. This elementary deduction directly relates the properties of time with the type of transformations. When all inertial frames measure the same time (time is absolute), the transformations are Galilean. When each inertial frame has its own time, different from the times of other inertial frames (time is not invariant) the transformations are Lorentz-like with the same positive parameter k. The parameter k is (...)
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  32.  21
    Irrational “Coefficients” in Renaissance Algebra.Jeffrey A. Oaks - 2017 - Science in Context 30 (2):141-172.
    ArgumentFrom the time of al-Khwārizmī in the ninth century to the beginning of the sixteenth century algebraists did not allow irrational numbers to serve as coefficients. To multiply$\sqrt {18} $byx, for instance, the result was expressed as the rhetorical equivalent of$\sqrt {18{x^2}} $. The reason for this practice has to do with the premodern concept of a monomial. The coefficient, or “number,” of a term was thought of as how many of that term are present, and not as the (...)
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  33.  70
    Minkowski spacetime and Lorentz invariance: The cart and the horse or two sides of a single coin.Pablo Acuña - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 55:1-12.
    Michel Janssen and Harvey Brown have driven a prominent recent debate concerning the direction of an alleged arrow of explanation between Minkowski spacetime and Lorentz invariance of dynamical laws in special relativity. In this article, I critically assess this controversy with the aim of clarifying the explanatory foundations of the theory. First, I show that two assumptions shared by the parties—that the dispute is independent of issues concerning spacetime ontology, and that there is an urgent need for a constructive (...)
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  34.  26
    Different Routes to Lorentz Symmetry Violations.B. G. Sidharth - 2008 - Foundations of Physics 38 (1):89-95.
    Recent observations of ultra high energy cosmic rays and gamma rays suggest that there are small violations of Lorentz symmetry. If there were no such violations, then the GZK cut off would hold and cosmic rays with energy ∼1020 eV or higher would not be reaching the earth. However some such events seem to have been observed. This has lead to phenomenological models in which there is a small violation of the Lorentz symmetry or the velocity of light. (...)
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  35.  7
    Hendrik Antoon Lorentz’s struggle with quantum theory.A. J. Kox - 2013 - Archive for History of Exact Sciences 67 (2):149-170.
    A historical overview is given of the contributions of Hendrik Antoon Lorentz in quantum theory. Although especially his early work is valuable, the main importance of Lorentz’s work lies in the conceptual clarifications he provided and in his critique of the foundations of quantum theory.
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  36.  41
    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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  37. Coefficients, effects, and genic selection.Alexander Rosenberg - 1983 - Philosophy of Science 50 (2):332-338.
  38.  24
    Lorentz Transformation Under a Discrete Dynamical Time and Continuous Space.Roland Riek - 2022 - Foundations of Physics 52 (5):1-12.
    The Lorentz transformation of space and time between two reference frames is one of the pillars of the special relativity theory. As a result of the Lorentz transformation, space and time are only relative and are entangled, while the Minkowski metric is Lorentz invariant. For this reason, the Lorentz transformation is one of the major obstructions in the development of physical theories with quantized space and time. Here is described the Lorentz transformation of a physical (...)
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  39. Lorentz-invariance in modal interpretations.with Michael Dickson - 2004 - In Jeremy Butterfield & Hans Halvorson (eds.), Quantum Entanglements: Selected Papers. New York: Clarendon Press.
     
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  40.  35
    Zur Linearität der Lorentz-TransformationenOn the linearity of the Lorentz transformations.Joachim Peschke - 1992 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 23 (2):313-314.
    U. Hoyer's argument for the linearity is discussed and a modification of the argument is proposed.
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  41. Lorentz Contraction of the Coulomb Field: An Experimental Proposal.Thomas E. Phipps Jr - 1992 - Apeiron: Studies in Infinite Nature 14.
  42.  67
    Lorentz Invariant Decompositions of the State Vector Spaces and the Basis Problem.Yanghyun Byun - 2004 - Foundations of Physics 34 (6):987-1003.
    We consider a representation of the state reduction which depends neither on its reality nor on the details of when and how it emerges. Then by means of the representation we find necessary conditions, even if not the sufficient ones, for a decomposition of the state vector space to be a solution to the basis problem. The conditions are that the decomposition should be Lorentz invariant and orthogonal and that the associated projections should be continuous. They are shown to (...)
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  43.  24
    Lorentz Violation in Torsional Antenna.Fabio Cardone, Gianni Albertini & Domenico Bassani - 2020 - Foundations of Science 27 (1):43-55.
    A torsional-antenna and a log-periodic antenna are used as a source and an analyzer, respectively, to investigate the possible anomalies of an electro-magnetic field. An unexpected isotropic signal has been detected using those torsion angles, which correspond to a breakdown of the Local Lorentz Invariance, which was found in the past. This coincidence is interpreted as the recovery of a lost symmetry by torqueing the antenna, thus putting in evidence that this Lorentz violation is of angular nature. Introducing (...)
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  44.  66
    Keynes’s Coefficient of Dependence Revisited.Peter Brössel - 2015 - Erkenntnis 80 (3):521-553.
    Probabilistic dependence and independence are among the key concepts of Bayesian epistemology. This paper focuses on the study of one specific quantitative notion of probabilistic dependence. More specifically, section 1 introduces Keynes’s coefficient of dependence and shows how it is related to pivotal aspects of scientific reasoning such as confirmation, coherence, the explanatory and unificatory power of theories, and the diversity of evidence. The intimate connection between Keynes’s coefficient of dependence and scientific reasoning raises the question of how (...)
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  45.  80
    The lorentz transformation and "space-time".Evander Bradley McGilvary - 1941 - Journal of Philosophy 38 (13):337-349.
  46.  22
    Lorentz Contraction relative to Fresnel dragged reference frame explains Solid-State Michelson-Morley Experiment Null Result.Dan Wagner - 2009 - Apeiron: Studies in Infinite Nature 16 (1):70-81.
  47. Lorentz Driven Density Increase Results in Higher Refractive Index and Greater Fresnel Drag.Dan Wagner & Wynnewood Pa - 2009 - Apeiron: Studies in Infinite Nature 16 (3):313.
  48.  43
    The lorentz-Fitzgerald contraction hypothesis and the combined rod contraction-clock retardation hypothesis.Herman Erlichson - 1971 - Philosophy of Science 38 (4):605-609.
    In a recent paper in this journal which was part of a panel discussion of Grünbaum's philosophy of science, M. G. Evans discusses the Lorentz-Fitzgerald contraction hypothesis and related matters [2]. The purpose of this note is to clarify and correct some of the points in Evans' paper.
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  49.  15
    Condensation coefficients in metal vapour deposition.V. N. E. Robinson & J. L. Robins - 1973 - Philosophical Magazine 28 (6):1419-1423.
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  50. Lorentz contraction and dimensionality of reality.Vesselin Petkov - unknown
    The purpose of this paper is to show that the Lorentz contraction of a rod is possible only if the rod’s world path is a real four-dimensional object. This result demonstrates that special relativity does require reality at the microscopic level to be a four-dimensional world represented by Minkowski spacetime.
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