Results for ' Relativity Principles'

968 found
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  1.  21
    The Relativity Principle and the Isotropy of Boosts.Tim Budden - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:528 - 541.
    A class of theories which satisfy the Relativity Principle has been overlooked. The kinematics for these theories is derived by relaxing the 'boost isotropy' symmetry normally invoked, and the role the dynamical fields play in determining the inertial coordinate systems is emphasised, leading to a criticism of Friedman's (1983) practice of identifying them via the absolute objects of a spacetime theory alone. Some theories complete with 'boost anisotropic' dynamics are given.
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  2. Time, inertia and the relativity principle.Richard T. W. Arthur - 2007
    In this paper I try to sort out a tangle of issues regarding time, inertia, proper time and the so-called “clock hypothesis” raised by Harvey Brown's discussion of them in his recent book, Physical Relativity. I attempt to clarify the connection between time and inertia, as well as the deficiencies in Newton's “derivation” of Corollary 5, by giving a group theoretic treatment original with J.-P. Provost. This shows how both the Galilei and Lorentz transformations may be derived from the (...)
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  3. Is the relativity principle consistent with classical electrodynamics?John Wiley - unknown
    It is common in the literature on classical electrodynamics (ED) and relativity theory that the transformation rules for the basic electrodynamical quantities are derived from the hypothesis that the relativity principle (RP) applies to Maxwell’s electrodynamics. As it will turn out from our analysis, these derivations raise several problems, and certain steps are logically questionable. This is, however, not our main concern in this paper. Even if these derivations were completely correct, they leave open the following questions: (1) (...)
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  4.  94
    Local and Global Relativity Principles.Bradford Skow - 2008 - Philosophers' Imprint 8:1-14.
    Local versions of the (special) principle of relativity say that if the same type of experiment is conducted in two isolated, unaccelerated laboratories, then the outcomes of those experiments must be the same. Global versions of the principle say that if you take a physically possible world and boost the entire material content of that world, you get another physically possible world. Some authors say that the local and the global principles are logically independent, and that the local (...)
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  5.  86
    The relativity principle and the nature of time.F. Selleri - 1997 - Foundations of Physics 27 (11):1527-1548.
    Old and recent ideas concerning the nature of time are reviewed, starting from Mach's refusal of Newton's absolute time. Many experiments show that the slowing down of moving clocks is a real phenomenon. Such must then also be the so-called “twin paradox,” which owes its name to its evident incompatibility with the philosophy of relativism (not to be confused with the theory of relativity). The Lorentz reformulation of special relativity started by postulating physical effects of the ether, but (...)
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  6. Galileo’s Ship and the Relativity Principle.Sebastián Murgueitio Ramírez - forthcoming - Noûs.
    It is widely acknowledged that the Galilean Relativity Principle, according to which the laws of classical systems are the same in all inertial frames in relative motion, has played an important role in the development of modern physics. It is also commonly believed that this principle holds the key to answering why, for example, we do not notice the orbital velocity of the Earth as we go about our day. And yet, I argue in this paper that the precise (...)
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  7. Is the relativity principle consistent with classical electrodynamics? Towards a logico-empiricist reconstruction of a physical theory.Marton Gomori & Laszlo E. Szabo - unknown
    It is common in the literature on classical electrodynamics and relativity theory that the transformation rules for the basic electrodynamical quantities are derived from the hypothesis that the relativity principle applies to Maxwell's electrodynamics. As it will turn out from our analysis, these derivations raise several problems, and certain steps are logically questionable. This is, however, not our main concern in this paper. Even if these derivations were completely correct, they leave open the following questions: Is the RP (...)
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  8. Is the relativity principle consistent with electrodynamics?John Wiley - unknown
    It is common in the literature on electrodynamics and relativity theory that the transformation rules for the basic electrodynamical quantities are derived from the hypothesis that the relativity principle (RP) applies for Maxwell’s electrodynamics. As it will turn out from our analysis, these derivations raise several problems, and certain steps are logically questionable. This is, however, not our main concern in this paper. Even if these derivations were completely correct, they leave open the following questions: (1) Is (RP) (...)
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  9.  49
    The String Uncertainty Relations Follow from the New Relativity Principle.Carlos Castro - 2000 - Foundations of Physics 30 (8):1301-1316.
    Stringy corrections to the ordinary Heisenberg uncertainty relations have been known for some time. However, a proper understanding of the underlying new physical principle modifying the ordinary Heisenberg uncertainty relations has not yet emerged. The author has recently proposed a new scale relativity theory as a physical foundation of string and M theories. In this work the stringy uncertainty relations, and corrections thereof, are rigorously derived from this new relativity principle without any ad-hoc assumptions. The precise connection between (...)
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  10.  83
    Irony and Galileo's Relativity Principle.William J. Gavin - 1971 - Thought: Fordham University Quarterly 46 (2):262-270.
    Ironically, in adopting Neo-Platonism over Aristotelianism, Galileo made significant advances concerning the general problem of motion but in doing so bracketed the crucial issue of gravity.
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  11. On the meaning of the relativity principle and other symmetries.Harvey R. Brown & Roland Sypel - 1995 - International Studies in the Philosophy of Science 9 (3):235 – 253.
    Abstract The historical evolution of the principle of relativity from Galileo to Einstein is briefly traced, and purported difficulties with Einstein's formulation of the principle are examined and dismissed. This formulation is then compared to a precise version formulated recently in the geometrical language of spacetime theories. We claim that the recent version is both logically puzzling and fails to capture a crucial physical insight contained in the earlier formulations. The implications of this claim for the modern treatment of (...)
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  12.  42
    Deducing Newton’s second law from relativity principles: A forgotten history.Olivier Darrigol - 2020 - Archive for History of Exact Sciences 74 (1):1-43.
    In French mechanical treatises of the nineteenth century, Newton’s second law of motion was frequently derived from a relativity principle. The origin of this trend is found in ingenious arguments by Huygens and Laplace, with intermediate contributions by Euler and d’Alembert. The derivations initially relied on Galilean relativity and impulsive forces. After Bélanger’s Cours de mécanique of 1847, they employed continuous forces and a stronger relativity with respect to any commonly impressed motion. The name “principle of relative (...)
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  13.  22
    Three different formalisations of einstein’s relativity principle.Judit X. Madarász, Gergely Székely & Mike Stannett - 2017 - Review of Symbolic Logic 10 (3):530-548.
    We present three natural but distinct formalisations of Einstein’s special principle of relativity, and demonstrate the relationships between them. In particular, we prove that they are logically distinct, but that they can be made equivalent by introducing a small number of additional, intuitively acceptable axioms.
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  14. The relativity and equivalence principles for self-gravitating systems.David Wallace - 2016 - In Dennis Lehmkuhl, Gregor Schiemann & Erhard Scholz (eds.), Towards a Theory of Spacetime Theories. New York, NY: Birkhauser.
    I criticise the view that the relativity and equivalence principles are consequences of the small-scale structure of the metric in general relativity, by arguing that these principles also apply to systems with non-trivial self-gravitation and hence non-trivial spacetime curvature (such as black holes). I provide an alternative account, incorporating aspects of the criticised view, which allows both principles to apply to systems with self-gravity.
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  15. Relative categoricity and abstraction principles.Sean Walsh & Sean Ebels-Duggan - 2015 - Review of Symbolic Logic 8 (3):572-606.
    Many recent writers in the philosophy of mathematics have put great weight on the relative categoricity of the traditional axiomatizations of our foundational theories of arithmetic and set theory. Another great enterprise in contemporary philosophy of mathematics has been Wright's and Hale's project of founding mathematics on abstraction principles. In earlier work, it was noted that one traditional abstraction principle, namely Hume's Principle, had a certain relative categoricity property, which here we term natural relative categoricity. In this paper, we (...)
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  16. The Principle of Relativity.A. Whitehead - 1923 - Revue de Métaphysique et de Morale 30 (3):7-8.
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  17.  71
    Relative truth, the correspondence principle and absolute truth.Leszek Nowak - 1975 - Philosophy of Science 42 (2):187-202.
    The present paper is intended to take up the basic issue in Marxist epistemology: does the development of human cognition include mechanisms that ensure the attainment of, or approximation to, the absolute truth?But to take up this issue we have to define the concept of absolute truth. This is why the paper begins with comment on the assumptions we adopt. This is followed by explanations of the concept of the absolute truth and that of relative truth and some of derivative (...)
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  18.  38
    Relativity and Equivalence in Hilbert Space: A Principle-Theory Approach to the Aharonov–Bohm Effect.Guy Hetzroni - 2020 - Foundations of Physics 50 (2):120-135.
    This paper formulates generalized versions of the general principle of relativity and of the principle of equivalence that can be applied to general abstract spaces. It is shown that when the principles are applied to the Hilbert space of a quantum particle, its law of coupling to electromagnetic fields is obtained. It is suggested to understand the Aharonov-Bohm effect in light of these principles, and the implications for some related foundational controversies are discussed.
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  19. (1 other version)Formal statement of the special principle of relativity.Marton Gomori & Laszlo E. Szabo - 2015 - Synthese 192 (7):1-24.
    While there is a longstanding discussion about the interpretation of the extended, general principle of relativity, there seems to be a consensus that the special principle of relativity is absolutely clear and unproblematic. However, a closer look at the literature on relativistic physics reveals a more confusing picture. There is a huge variety of, sometimes metaphoric, formulations of the relativity principle, and there are different, sometimes controversial, views on its actual content. The aim of this paper is (...)
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  20.  47
    Relativity Theory as a Theory of Principles: A Reading of Cassirer’s Zur Einstein’schen Relativitätstheorie.Marco Giovanelli - 2023 - Hopos: The Journal of the International Society for the History of Philosophy of Science 13 (2):261-296.
    In his Zur Einstein’schen Relativitätstheorie, Ernst Cassirer presents relativity theory as the last manifestation of the tradition of the “physics of principles” that, starting from the nineteenth century, has progressively prevailed over that of the “physics of models.” In particular, according to Cassirer, the relativity principle plays a role similar to the energy principle in previous physics. In this article, I argue that this comparison represents the core of Cassirer’s neo-Kantian interpretation of relativity. Cassirer pointed out (...)
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  21.  47
    The Principle of Relativity.Albert Einstein - 1920 - [Calcutta]: Dover Publications. Edited by H. Minkowski, Meghnad Saha & Satyendranath Bose.
    This collection of original papers on the special and general theories of relativity constitutes an indispensable part of a library on relativity. Here are the 11 papers that forged the general and special theories of relativity: seven papers by Einstein, plus two papers by Lorentz and one each by Minkowski and Weyl.
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  22.  12
    The principle of relativity with applications to physical science.Alfred North Whitehead - 1922 - Cambridge [Eng.]: The University press.
    Alfred North Whitehead (1861-1947) was a prominent English mathematician and philosopher who co-authored the highly influential Principia Mathematica with Bertrand Russell. Originally published in 1922, this book forms the follow-up volume to "The Principles of Natural Knowledge" (1919) and "The Concept of Nature" (1920). In it, Whitehead puts forward an alternative theory of relativity, one which goes against the heterogeneity of Einstein's later theories in deducing that 'our experience requires and exhibits a basis in uniformity'. The text is (...)
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  23.  26
    Relativity, categories and principles in the diuisio aristotelea 67M/32DL.Roberto Granieri - 2022 - Journal of Hellenic Studies 142:204-218.
    The Diuisio Aristotelea 67M/32DL draws a distinction between two categories of beings, per se and relatives. I defend three main theses. First, that the relation of dependence characterizing the members of the latter category is modal and symmetrical in nature and, accordingly, the per se-relatives contrast cannot be equivalent to the substance-accidents contrast. Second, that the type of relativity relevant to this diuisio is both ontological and semantic in nature (but with different emphases depending on the version of the (...)
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  24.  30
    Global and local principles of relativity.Hans-J. Treder - 1970 - Foundations of Physics 1 (1):77-94.
    The principles of relativity are assertions about the structure of physical laws, whose validity or nonvalidity can only be empirically confirmed or falsified. The weakest forms of those principles are the so-calledglobal propositions. They furnish statements as to which operations—assumed to be performed simultaneously throughout the whole universe—have no influence upon the physical events. Much stronger principles are those of alocal nature. These assert that the physical properties of a system do not change, when the relation (...)
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  25.  43
    The harm principle, personal identity and identity-relative paternalism.Dominic Wilkinson - 2023 - Journal of Medical Ethics 49 (6):393-402.
    Is it ethical for doctors or courts to prevent patients from making choices that will cause significant harm to themselves in the future? According to an important liberal principle the only justification for infringing the liberty of an individual is to prevent harm to others; harm to the self does not suffice.In this paper, I explore Derek Parfit’s arguments that blur the sharp line between harm to self and others. I analyse cases of treatment refusal by capacitous patients and describe (...)
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  26. Does the principle of relativity imply Winnie's (1970) equal passage times principle?Harvey R. Brown - 1990 - Philosophy of Science 57 (2):313-324.
    The kinematical principle of Equal Passage Times (EPT) was introduced by Winnie in his 1970 derivation of the relativistic coordinate transformations compatible with arbitrary synchrony conventions in one-dimensional space. In this paper, the claim by Winnie and later Giannoni that EPT is a direct consequence of the relativity principle is questioned. It is shown that EPT, given Einstein's 1905 postulates, is equivalent to the relativistic (synchrony independent) clock retardation principle, and that for standard synchrony it reduces to an isotropy (...)
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  27. Reinterpreting Relativity: Using the Equivalence Principle to Explain Away Cosmological Anomalies.Marcus Arvan - manuscript
    According to the standard interpretation of Einstein’s field equations, gravity consists of mass-energy curving spacetime, and an additional physical force or entity—denoted by Λ (the ‘cosmological constant’)—is responsible for the Universe’s metric-expansion. Although General Relativity’s direct predictions have been systematically confirmed, the dominant cosmological model thought to follow from it—the ΛCDM (Lambda cold dark matter) model of the Universe’s history and composition—faces considerable challenges, including various observational anomalies and experimental failures to detect dark matter, dark energy, or inflation-field candidates. (...)
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  28.  23
    Special Relativity Kinematics with Anisotropic Propagation of Light and Correspondence Principle.Georgy I. Burde - 2016 - Foundations of Physics 46 (12):1573-1597.
    The purpose of the present paper is to develop kinematics of the special relativity with an anisotropy of the one-way speed of light. As distinct from a common approach, when the issue of anisotropy of the light propagation is placed into the context of conventionality of distant simultaneity, it is supposed that an anisotropy of the one-way speed of light is due to a real space anisotropy. In that situation, some assumptions used in developing the standard special relativity (...)
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  29.  50
    The Principle of Relativity.Paul Carus - 1912 - The Monist 22 (2):188-229.
  30. Principle or constructive relativity.Mathias Frisch - 2011 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 42 (3):176-183.
    I examine Harvey Brown’s account of relativity as dynamic and constructive theory and Michel Janssen recent criticism of it. By contrasting Einstein’s principle-constructive distinction with a related distinction by Lorentz, I argue that Einstein's distinction presents a false dichotomy. Appealing to Lorentz’s distinction, I argue that there is less of a disagreement between Brown and Janssen than appears initially and, hence, that Brown’s view presents less of a departure from orthodoxy than it may seem. Neither the kinematics-dynamics distinction nor (...)
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  31.  36
    The Principle of Biological Relativity: Origins and Current Status.Denis Noble - 2021 - In Jan Voosholz & Markus Gabriel (eds.), Top-Down Causation and Emergence. Cham: Springer Verlag. pp. 117-133.
    This chapter describes the origin of the principle of biological relativity and its development since 2012. It was first formulated by distinguishing between the causal properties of initial and boundary conditions, regarded as a formal cause, compared to the dynamics of the differential functions themselves, regarded as an efficient cause. The concept of organisational level, and of boundaries between levels and environmental factors are also central to the principle. Work on the properties of boundaries reveals two important features: the (...)
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  32. Synchronization Gauges and the Principles of Special Relativity.Guido Rizzi, Matteo Luca Ruggiero & Alessio Serafini - 2004 - Foundations of Physics 34 (12):1835-1887.
    The axiomatic bases of Special Relativity Theory (SRT) are thoroughly re-examined from an operational point of view, with particular emphasis on the status of Einstein synchronization in the light of the possibility of arbitrary synchronization procedures in inertial reference frames. Once correctly and explicitly phrased, the principles of SRT allow for a wide range of “theories” that differ from the standard SRT only for the difference in the chosen synchronization procedures, but are wholly equivalent to SRT in predicting (...)
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  33. The Principle of Relativity, with Applications to Physical Science.A. N. Whitehead - 1923 - Mind 32 (126):211-219.
     
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  34.  8
    The Physical Principles of Natural Philosophy —The Third Discussion on Contradictions between Quantum Mechanics and Relativity Using the Cosmic Origin Principle.Samo Liu - 2024 - Open Journal of Philosophy 14 (4):967-994.
    The philosophical Framework of modern physics puts forward a philosophical solution to the contradiction between relativity theory and quantum mechanics theory, aiming to break through the restriction of material philosophy on human thought and solve the artificial contradiction generated by material philosophy. This scheme is the physical principle of natural philosophy. Newton discovered the mathematical principles of natural philosophy, he expressed the principles of the universe’s natural philosophy through mathematics, discovering universal gravitation, the mutual perception and motion (...)
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  35.  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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  36. Gravitation and cosmology: principles and applications of the general theory of relativity.Steven Weinberg - 1972 - New York,: Wiley.
    Weinberg's 1972 work, in his description, had two purposes. The first was practical to bring together and assess the wealth of data provided over the previous decade while realizing that newer data would come in even as the book was being printed. He hoped the comprehensive picture would prepare the reader and himself to that new data as it emerged. The second was to produce a textbook about general relativity in which geometric ideas were not given a starring role (...)
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  37.  10
    (1 other version)The principle of relativity in the light of the philosophy of science.Paul Carus & James Bradley - 1913 - Chicago,: Open Court Pub. Co.. Edited by James Bradley.
  38.  13
    The general principle of relativity in its philosophical and historical aspect.Herbert Wildon Carr - 1920 - London,: Macmillan & co..
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  39.  93
    Relative Identity and Locke's Principle of Individuation.William L. Uzgalis - 1990 - History of Philosophy Quarterly 7 (3):283 - 297.
  40.  22
    Remarks about correspondence of relativity and causality principles.A. L. Kholmetskii - 2001 - Apeiron 8 (1).
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  41. Mach's principle within general relativity.Donald Lynden-Bell - 2015 - In James Ladyman, Stuart Presnell, Gordon McCabe, Michał Eckstein & Sebastian J. Szybka (eds.), Road to reality with Roger Penrose. Kraków: Copernicus Center Press.
     
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  42. The general principle of relativity in its philosophical and historical aspect, London 1920.H. Wildon Carr - 1923 - Kwartalnik Filozoficzny 2 (1):100-103.
     
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  43. Source text 1912: The Principle of Relativity and Gravitation.Gunnar Nordstrom - 2007 - Boston Studies in the Philosophy of Science 250 (3).
  44.  19
    The Confrontation Between Relativity and the Principle of Reciprocal Action.S. X. K. Howusu - 1993 - Apeiron: Studies in Infinite Nature 15:7-10.
  45.  10
    The relative proximity principle and the postreinforcement pause.Richard L. Shull & Aaron J. Brownstein - 1975 - Bulletin of the Psychonomic Society 5 (2):129-131.
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  46.  67
    The Newtonian Equivalence Principle: How the Relativity of Acceleration Led Newton to the Equivalence of Inertial and Gravitational Mass.Craig W. Fox - 2016 - Philosophy of Science 83 (5):1027-1038.
    From late 1684 through mid-1685, Isaac Newton turned to developing and refining the conceptual foundations presupposed by his emerging physics. Analysis of his manuscripts from this period reveals that Newton’s understanding of the relativity of acceleration led him to seek a spatiotemporally invariant quantity of matter. He found two such quantities and then designed an experiment to discover their relationship. Interpreting the experiment, however, required distinguishing a new notion of force. Others have recognized the conceptual distinction between inertial and (...)
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  47.  44
    Some extensions of the principles of idealization transfer and choice in the relative internal set theory.Yves Péraire - 1995 - Archive for Mathematical Logic 34 (4):269-277.
    The results established in this paper are in connection with the Relative Internal Set Theory (R.I.S.T.). The main result is the general principle of choice: Let α be a level and let Φ(x, y) be anαexternalαbounded formula of the language of R.I.S.T.. Suppose that to each elementx, dominated by α, corresponds an elementy x such that Φ(x, y x ) holds, then there exists a function of choice ψ such that, which is a very general principle of choice, for everyx (...)
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  48.  48
    (1 other version)Relativity.Albert Einstein - 1920 - London,: Routledge. Edited by Robert W. Lawson.
    _Time_'s 'Man of the Century', Albert Einstein is the unquestioned founder of modern physics. His theory of relativity is the most important scientific idea of the modern era. In this short book Einstein explains, using the minimum of mathematical terms, the basic ideas and principles of the theory which has shaped the world we live in today. Unsurpassed by any subsequent books on relativity, this remains the most popular and useful exposition of Einstein's immense contribution to human (...)
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  49.  23
    A satire on the principle of relativity.Leo Gilbert & P. C. - 1914 - The Monist 24 (2):288 - 309.
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  50.  39
    The Principle of Relativity as a Phase in the Development of Science.Paul Carus - 1913 - The Monist 23 (3):417-421.
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