Results for 'Newtonian time'

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  1.  39
    Agents necessitating effects in newtonian time and space: from power and opportunity to effectivity.Jan Broersen - 2019 - Synthese 196 (1):31-68.
    We extend stit logic by adding a spatial dimension. This enables us to distinguish between powers and opportunities of agents. Powers are agent-specific and do not depend on an agent’s location. Opportunities do depend on locations, and are the same for every agent. The central idea is to define the real possibility to see to the truth of a condition in space and time as the combination of the power and the opportunity to do so. The focus on agent-relative (...)
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  2. Newtonian time and psychological explanation.B. D. Slife - 1995 - Journal of Mind and Behavior 16 (1):45-62.
    Newton's conception of time has had a profound influence upon science, particularly psychology. Five characteristics of explanation have devolved from Newton's temporal framework: objectivity, continuity, linearity, universality, and reductivity. These characteristics are outlined in the present essay and shown to be central to psychological theories and methods. Indeed, Newton's temporal framework is so central that it often goes unexamined in psychology. Examination is important, however, because recent critics of Newton's framework - including both scientists and philosophers - have questioned (...)
     
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  3.  45
    A note on Newtonian time.Kenneth C. Clatterbaugh - 1973 - Philosophy of Science 40 (2):281-284.
  4.  20
    Reconsidering Newtonian Temporality in the Context of Time Pressures of Higher Education.Jarkko Tapani Impola - 2023 - Studies in Philosophy and Education 42 (4):431-448.
    This article concerns the problem of time pressures in higher education from the perspective of Newtonian (clock)time and pedagogical action. While most recent critiques of contemporary time pressures turn to alternative time theories in place of Newtonian temporality, the current paper outlines a way to conceive education from a Newtonian time perspective while also retaining theorizations of education as a form of cyclical and uncertain interaction. Time is theorized as changes in (...)
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  5. Space-time relationism in Newtonian and relativistic physics.Dennis Dieks - 2000 - International Studies in the Philosophy of Science 15 (1):5 – 17.
    I argue that there is natural relationist interpretation of Newtonian and relativistic non-quantum physics. Although relationist, this interpretation does not fall prey to the traditional objections based on the existence of inertial effects.
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  6.  36
    Polyphonic Music and Classical Physics: The Origin of Newtonian Time.Geza Szamosi - 1990 - History of Science 28 (2):175-191.
  7. From Newtonian determinism to branching-space-time indeterminism.Nuel Belnap - 2007
  8. Newtonian determinism to branching space-times indeterminism in two moves.Nuel Belnap - 2012 - Synthese 188 (1):5-21.
    “Branching space-times” (BST) is intended as a representation of objective, event-based indeterminism. As such, BST exhibits both a spatio-temporal aspect and an indeterministic “modal” aspect of alternative possible historical courses of events. An essential feature of BST is that it can also represent spatial or space-like relationships as part of its (more or less) relativistic theory of spatio-temporal relations; this ability is essential for the representation of local (in contrast with “global”) indeterminism. This essay indicates how BST might be seen (...)
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  9. Newtonian space-time.Howard Stein - 1967 - Texas Quarterly 10 (3):174--200.
     
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  10.  90
    Newtonian Mechanics.Ryan Samaroo - 2022 - In Eleanor Knox & Alastair Wilson (eds.), The Routledge Companion to Philosophy of Physics. London, UK: Routledge.
    Newtonian mechanics is more than just an empirically successful theory of matter in motion: it is an account of what knowledge of the physical world should look like. But what is this account? What is distinctive about it? To answer these questions, I begin by introducing the laws of motion, the relations among them, and the spatio-temporal framework that is implicit in them. Then I turn to the question of their methodological character. This has been the locus of philosophical (...)
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  11.  65
    Two moves take Newtonian determinism to branching space-times.Nuel Belnap - unknown
    “Branching space-times” is intended as a representation of objective, event-based indeterminism. As such, BST exhibits both a spatio-temporal aspect and an indeterministic “modal” aspect of alternative possible historical courses of events. An essential feature of BST is that it can also represent spatial or space-like relationships as part of its relativistic theory of spatio-temporal relations; this ability is essential for the representation of local indeterminism. This essay indicates how BST might be seen to grow out of Newton ’s deterministic and (...)
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  12.  15
    Newtonian Fractional-Dimension Gravity and MOND.Gabriele U. Varieschi - 2020 - Foundations of Physics 50 (11):1608-1644.
    This paper introduces a possible alternative model of gravity based on the theory of fractional-dimension spaces and its applications to Newtonian gravity. In particular, Gauss’s law for gravity as well as other fundamental classical laws are extended to a D-dimensional metric space, where D can be a non-integer dimension. We show a possible connection between this Newtonian Fractional-Dimension Gravity (NFDG) and Modified Newtonian Dynamics (MOND), a leading alternative gravity model which accounts for the observed properties of galaxies (...)
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  13. Newtonian Emanation, Spinozism, Measurement and the Baconian Origins of the Laws of Nature.Eric Schliesser - 2013 - Foundations of Science 18 (3):449-466.
    The first two sections of this paper investigate what Newton could have meant in a now famous passage from “De Graviatione” (hereafter “DeGrav”) that “space is as it were an emanative effect of God.” First it offers a careful examination of the four key passages within DeGrav that bear on this. The paper shows that the internal logic of Newton’s argument permits several interpretations. In doing so, the paper calls attention to a Spinozistic strain in Newton’s thought. Second it sketches (...)
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  14.  34
    A Unified Framework for Relativity and Curvilinear-Time Newtonian Mechanics.D. J. Hurley & M. A. Vandyck - 2008 - Foundations of Physics 38 (4):395-408.
    Classical mechanics is presented so as to render the new formulation valid for an arbitrary temporal variable, as opposed to Newton’s Absolute Time only. Newton’s theory then becomes formally identical (in a precise sense) to relativity, albeit in a three-dimensional manifold. (The ultimate difference between the two dynamics is traced to the existence of the relativistic ‘mass-shell’ condition.) A classical Lagrangian is provided for our formulation of the equations of motion and it is related to one of the known (...)
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  15. Elementary causal structures in Newtonian and Minkowskian space-time.George Berger - 1974 - Theoria 40 (3):191.
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  16. Was Newtonian cosmology really inconsistent?Peter Vickers - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (3):197-208.
    This paper follows up a debate as to the consistency of Newtonian cosmology. Whereas Malament has shown that Newtonian cosmology *is* not inconsistent, to date there has been no analysis of Norton’s claim that Newtonian cosmology *was* inconsistent prior to certain advances in the 1930s, and in particular prior to Seeliger’s seminal paper of 1895. In this paper I agree that there are assumptions, Newtonian and cosmological in character, and relevant to the real history of science, (...)
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  17.  34
    Newtonian Dynamics from the Principle of Maximum Caliber.Diego González, Sergio Davis & Gonzalo Gutiérrez - 2014 - Foundations of Physics 44 (9):923-931.
    The foundations of Statistical Mechanics can be recovered almost in their entirety from the principle of maximum entropy. In this work we show that its non-equilibrium generalization, the principle of maximum caliber (Jaynes, Phys Rev 106:620–630, 1957), when applied to the unknown trajectory followed by a particle, leads to Newton’s second law under two quite intuitive assumptions (both the expected square displacement in one step and the spatial probability distribution of the particle are known at all times). Our derivation explicitly (...)
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  18.  62
    Does Newtonian Space Provide Identity to Quantum Systems?Décio Krause - 2019 - Foundations of Science 24 (2):197-215.
    Physics is not just mathematics. This seems trivial, but poses difficult and interesting questions. In this paper we analyse a particular discrepancy between non-relativistic quantum mechanics and ‘classical’ space and time. We also suggest, but not discuss, the case of the relativistic QM. In this work, we are more concerned with the notion of space and its mathematical representation. The mathematics entails that any two spatially separated objects are necessarily different, which implies that they are discernible —we say that (...)
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  19. More problems for Newtonian cosmology.David Wallace - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 57:35-40.
    I point out a radical indeterminism in potential-based formulations of Newtonian gravity once we drop the condition that the potential vanishes at infinity. This indeterminism, which is well known in theoretical cosmology but has received little attention in foundational discussions, can be removed only by specifying boundary conditions at all instants of time, which undermines the theory's claim to be fully cosmological, i.e., to apply to the Universe as a whole. A recent alternative formulation of Newtonian gravity (...)
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  20.  10
    Conceptual Evolution of Newtonian and Relativistic Mechanics.Amitabha Ghosh - 2018 - Singapore: Imprint: Springer.
    This book provides an introduction to Newtonian and relativistic mechanics. Unlike other books on the topic, which generally take a 'top-down' approach, it follows a novel system to show how the concepts of the 'science of motion' evolved through a veritable jungle of intermediate ideas and concepts. Starting with Aristotelian philosophy, the text gradually unravels how the human mind slowly progressed towards the fundamental ideas of inertia physics. The concepts that now appear so obvious to even a high school (...)
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  21. Newtonian supertasks: A critical analysis.Joseph S. Alper & Mark Bridger - 1998 - Synthese 114 (2):355-369.
    In two recent papers Perez Laraudogoitia has described a variety of supertasks involving elastic collisions in Newtonian systems containing a denumerably infinite set of particles. He maintains that these various supertasks give examples of systems in which energy is not conserved, particles at rest begin to move spontaneously, particles disappear from a system, and particles are created ex nihilo. An analysis of these supertasks suggests that they involve systems that do not satisfy the mathematical conditions required of Newtonian (...)
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  22.  78
    A limited conventionalist critique of Newtonian space-time.David Zaret - 1980 - Philosophy of Science 47 (3):474-494.
    In this paper, I examine a number of alternative global structures for Newtonian space-time, and corresponding Newtonian theories of mechanics and gravitation. I argue that since these theories differ only with respect to questions concerning the relative distribution of inertial and gravitational forces, the choice between them is a matter of convention. Therefore, the global structure of Newtonian space-time is also a matter of convention. Since this result is based on a consideration of the nature (...)
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  23.  41
    On biological analogs of Newtonian paradigms.Thomas S. Hall - 1968 - Philosophy of Science 35 (1):6-27.
    To what extent is the scientist's endeavor qua scientist influenced by his philosophic image of himself? A preliminary and partial answer to this question is suggested by a study of eight physiological thinkers of the second half of the eighteenth century, a period during which biology was much influenced by the scientific and philosophical ideas of Isaac Newton. At this time, physiologists invoked certain "principles," "properties," and "powers" which were deemed useful as explanatory devices, even though they could not (...)
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  24.  26
    Kant’s Asynchronicity Concerning Newtonian Space and Gravity in his Pre-Critical Writings.E. Görg - 2020 - Kantian Journal 39 (4):7-28.
    Kant’s ‘Newtonianism’ has been rightly highlighted by figures like Friedman. The follow-up debates led to a more adequate view on Kant’s natural philosophy and in particular his relation towards Newton. But the discussion that evolved did not point to the asynchronicity that takes place in Kant’s struggle with the central Newtonian concepts. Newtonian space and gravity, in revised form, are of central concern to Kant’s critical philosophy. But Kant adapted and re-evaluated these two concepts in an asynchronous way. (...)
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  25. Reconciliation of the Newtonian Framework with Thermodynamics by the Reproducibility of a Collective Physical Quantity.J. M. Guido - 1988 - In International Archives of the History of Ideas Archives internationales d'histoire des idées. pp. 183-191.
    -/- Attempts to reduce irreversible processes to the scope of Newton’s mechanics are particularly challenging topics for both physical and philosophical research. Hollinger and Zenzen,1 for instance, claim that macroscopic irreversibility has a mechanical origin, and they explain this within the Newtonian framework. Newton’s Scientific and Philosophical Legacy Newton’s Scientific and Philosophical Legacy Look -/- .
     
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  26.  82
    Time travel, hyperspace and Cheshire Cats.Alasdair Richmond - 2018 - Synthese 195 (11):5037-5058.
    H. G. Wells’ Time Traveller inhabits uniform Newtonian time. Where relativistic/quantum travelers into the past follow spacetime curvatures, past-bound Wellsians must reverse their direction of travel relative to absolute time. William Grey and Robin Le Poidevin claim reversing Wellsians must overlap with themselves or fade away piecemeal like the Cheshire Cat. Self-overlap is physically impossible but ‘Cheshire Cat’ fades destroy Wellsians’ causal continuity and breed bizarre fusions of traveler-stages with opposed time-directions. However, Wellsians who rotate (...)
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  27.  49
    In search of relativistic time.Marc Lachièze-Rey - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (1):38-47.
    This paper explores the status of some notions which are usually associated to time, like datations, chronology, durations, causality, cosmic time and time functions in the Einsteinian relativistic theories. It shows how, even if some of these notions do exist in the theory or for some particular solution of it, they appear usually in mutual conflict: they cannot be synthesized coherently, and this is interpreted as the impossibility to construct a common entity which could be called (...). This contrasts with the case in Newtonian physics where such a synthesis precisely constitutes Newtonian time. After an illustration by comparing the status of time in Einsteinian physics with that of the vertical direction in Newtonian physics, I will conclude that there is no pertinent notion of time in Einsteinian theories. (shrink)
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  28.  49
    Monadology, Materialism and Newtonian Forces: The Turn in Kant’s Theory of Matter.Paolo Pecere - 2016 - Quaestio 16:167-189.
    Kant elaborated his dynamical theory of matter in two quite different systematic accounts, the first in the Monadologia physica, the second in the Dynamics chapter of the Metaphysische Anfangsgründe der Naturwissenschaft. In this paper I investigate the transition from the monadological to the “continuum” dynamical theory of matter, whose exact timing and motives are not explicitly clarified in Kant’s writings. I locate Kant’s turn around the middle 1760s, presenting Kant’s abandonment of his own physical monadology as a way out of (...)
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  29. Time and Chance.David Z. Albert - 2000 - Cambridge, Mass.: Harvard University Press.
    This book is an attempt to get to the bottom of an acute and perennial tension between our best scientific pictures of the fundamental physical structure of the world and our everyday empirical experience of it. The trouble is about the direction of time. The situation (very briefly) is that it is a consequence of almost every one of those fundamental scientific pictures--and that it is at the same time radically at odds with our common sense--that whatever can (...)
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  30. On time, tense, and aspect: An essay in English metaphysics.Emmon Bach - unknown
    In 1936, Benjamin Lee Whorf wrote a justly famous paper entitled "An American Indian Model of the Universe" (Carroll, 1956). In that paper, Whorf criticized the easy assumption that people in different cultures, speaking radically different languages, share common presuppositions about what the world is like. He contrasted the Hopi view of space and time with what he called elsewhere the Standard Average European view. For the Hopi, space and time are inherently relativistic; for the speaker of Western (...)
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  31.  30
    Mach's Denial of Absolute Time.Matias Slavov - 2023 - History of Philosophy Quarterly 40 (1):85-104.
    Mach repudiated Newton's argument for absolute time. He denied there is such a thing as time itself that exists independently of any external change. In doing so, Mach failed to appreciate Newton's scientific practice. Absolute time is intrinsically related to Newton's laws of motion and the method of fluxions. Commentators have noted similarities between Mach's rejection of Newtonian time and his rejection of the independent existence of atoms. In this article, it shall be argued that (...)
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  32. Space–time philosophy reconstructed via massive Nordström scalar gravities? Laws vs. geometry, conventionality, and underdetermination.J. Brian Pitts - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 53:73-92.
    What if gravity satisfied the Klein-Gordon equation? Both particle physics from the 1920s-30s and the 1890s Neumann-Seeliger modification of Newtonian gravity with exponential decay suggest considering a "graviton mass term" for gravity, which is _algebraic_ in the potential. Unlike Nordström's "massless" theory, massive scalar gravity is strictly special relativistic in the sense of being invariant under the Poincaré group but not the 15-parameter Bateman-Cunningham conformal group. It therefore exhibits the whole of Minkowski space-time structure, albeit only indirectly concerning (...)
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  33.  30
    Time and the Timeless.Isabel Stearns - 1950 - Review of Metaphysics 4 (2):187 - 200.
    Before I can urge this position, however, I must first dispose of alternative views which might be brought against it from the very start. Let us ask if a theory of Newtonian time or a time ontologically complete in itself renders passage comprehensible. The answer must be that it does not. If there is to be passage, something must pass; that at least is certain, but this something cannot be the moments which comprise an absolute time, (...)
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  34.  41
    Donald J. Wilcox. The Measure of Times Past. Pre-Newtonian Chronologies and the Rhetoric of Relative Time. Chicago and London: University of Chicago Press, 1987. Pp. ix + 292. ISBN 0-226-89721-4. £21.50, $32.95. [REVIEW]John Hendry - 1988 - British Journal for the History of Science 21 (3):375-375.
  35. Solving Numerically Ermakov-type Equation for Newtonian Cosmology Model with Vortex.Victor Christianto, Florentin Smarandache & Yunita Umniyati - manuscript
    It has been known for long time that most of the existing cosmology models have singularity problem. Cosmological singularity has been a consequence of excessive symmetry of flow, such as “Hubble’s law”. More realistic one is suggested, based on Newtonian cosmology model but here we include the vertical-rotational effect of the whole Universe. We review a Riccati-type equation obtained by Nurgaliev, and solve the equation numerically with Mathematica. It is our hope that the new proposed method can be (...)
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  36.  61
    Four Causal Classes of Newtonian Frames.Bartolomé Coll, Joan Josep Ferrando & Juan Antonio Morales-Lladosa - 2009 - Foundations of Physics 39 (11):1280-1295.
    The causal characters (spacelike, lightlike, timelike) of the coordinate lines, coordinate surfaces and coordinate hypersurfaces of a coordinate system in Relativity define what is called its causal class. It is known that, in any relativistic space-time, there exist one hundred and ninety nine such causal classes. But in Newtonian physics (where only spacelike and timelike characters exist) the corresponding causal classes have not been discussed until recently. Here it is shown that, in sharp contrast with the relativistic case, (...)
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  37. Time for Hume’s Unchanging Objects.Miren Boehm & Maité Cruz - 2023 - Philosophers' Imprint 23 (16).
    In his discussion of our idea of time in the Treatise, Hume makes the perplexing claim that unchanging objects cannot be said to endure. While Hume is targeting the Newtonian conception of absolute time, it is not at all clear how his denial that unchanging objects are in time fits with this target. Moreover, Hume diagnoses our belief that unchanging objects endure as the product of a psychological fiction, but his account of this fiction is also (...)
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  38. Time and eternity: Hymnic, biblical, scientific, and theological views.John R. Albright - 2009 - Zygon 44 (4):989-996.
    The book Time and Eternity , the English version of Zeit und Ewigkeit , by Antje Jackelén, contains scientific and theological treatments of these two topics, starting with the usage of such ideas in German, Swedish, and English hymns. This essay describes her work and explains how the scientific ideas provide a coherent framework for understanding the place of time.
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  39.  11
    The Problem of Time: Quantum Mechanics Versus General Relativity.Edward Anderson - 2017 - Cham: Imprint: Springer.
    This book is a treatise on time and on background independence in physics. It first considers how time is conceived of in each accepted paradigm of physics: Newtonian, special relativity, quantum mechanics (QM) and general relativity (GR). Substantial differences are moreover uncovered between what is meant by time in QM and in GR. These differences jointly source the Problem of Time: Nine interlinked facets which arise upon attempting concurrent treatment of the QM and GR paradigms, (...)
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  40.  86
    What Is a Singularity in Geometrized Newtonian Gravitation?James Owen Weatherall - 2014 - Philosophy of Science 81 (5):1077-1089.
    I discuss singular space-times in the context of the geometrized formulation of Newtonian gravitation. I argue first that geodesic incompleteness is a natural criterion for when a model of geometrized Newtonian gravitation is singular, and then I show that singularities in this sense arise naturally in classical physics by stating and proving a classical version of the Raychaudhuri-Komar singularity theorem.
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  41.  31
    Stepping Beyond the Newtonian Paradigm in Biology. Towards an Integrable Model of Life: Accelerating Discovery in the Biological Foundations of Science.Plamen L. Simeonov, Edwin Brezina, Ron Cottam, Andreé C. Ehresmann, Arran Gare, Ted Goranson, Jaime Gomez-­‐Ramirez, Brian D. Josephson, Bruno Marchal, Koichiro Matsuno, Robert S. Root-­Bernstein, Otto E. Rössler, Stanley N. Salthe, Marcin Schroeder, Bill Seaman & Pridi Siregar - 2012 - In Plamen L. Simeonov, Leslie S. Smith & Andrée C. Ehresmann (eds.), Integral Biomathics: Tracing the Road to Reality. Springer. pp. 328-427.
    The INBIOSA project brings together a group of experts across many disciplines who believe that science requires a revolutionary transformative step in order to address many of the vexing challenges presented by the world. It is INBIOSA’s purpose to enable the focused collaboration of an interdisciplinary community of original thinkers. This paper sets out the case for support for this effort. The focus of the transformative research program proposal is biology-centric. We admit that biology to date has been more fact-oriented (...)
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  42.  6
    Space-Time and the Community of Beings: Some Cosmological Speculations.George A. Kendall - 1987 - The Thomist 51 (3):480-500.
    In lieu of an abstract, here is a brief excerpt of the content:SPACE-TIME AND THE COMMUNITY OF BEINGS: SOME COSMOLOGICAL SPECULATIONS INTRODUCTION XERT EINSTEIN, in his essay "Relativity and the Problem of Space," makes several interesting comments on the implications of relativity theory for the Newtonian concepts of absolute space and time. Among these are the following: Since the special theory of relativity revealed the physical equivalence of all inertial systems, it proved the untenability of the hypothesis (...)
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  43.  20
    Investigating Total Collisions of the Newtonian N-Body Problem on Shape Space.Paula Reichert - 2021 - Foundations of Physics 51 (2):1-29.
    We analyze the points of total collision of the Newtonian gravitational system on shape space (the relational configuration space of the system). While the Newtonian equations of motion, formulated with respect to absolute space and time, are singular at the point of total collision due to the singularity of the Newton potential at that point, this need not be the case on shape space where absolute scale doesn’t exist. We investigate whether, adopting a relational description of the (...)
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  44. (8 other versions)Stepping Beyond the Newtonian Paradigm in Biology. Towards an Integrable Model of Life: Accelerating Discovery in the Biological Foundations of Science.Plamen L. Simeonov, Edwin Brezina, Ron Cottam, Andreé C. Ehresmann, Arran Gare, Ted Goranson, Jaime Gomez-­‐Ramirez, Brian D. Josephson, Bruno Marchal, Koichiro Matsuno, Robert S. Root-­Bernstein, Otto E. Rössler, Stanley N. Salthe, Marcin Schroeder, Bill Seaman & Pridi Siregar - 2012 - In Plamen L. Simeonov, Leslie S. Smith & Andrée C. Ehresmann (eds.), Integral Biomathics: Tracing the Road to Reality. Springer. pp. 328-427.
    The INBIOSA project brings together a group of experts across many disciplines who believe that science requires a revolutionary transformative step in order to address many of the vexing challenges presented by the world. It is INBIOSA’s purpose to enable the focused collaboration of an interdisciplinary community of original thinkers. This paper sets out the case for support for this effort. The focus of the transformative research program proposal is biology-centric. We admit that biology to date has been more fact-oriented (...)
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  45.  58
    Newton's Philosophy of Time.Eric Schliesser - 2013 - In Adrian Bardon & Heather Dyke (eds.), A Companion to the Philosophy of Time. Malden, MA: Wiley-Blackwell. pp. 87–101.
    This chapter explains what Isaac Newton means with the phrase “absolute, true, and mathematical time” in order to discuss some of the philosophic issues that it gives rise to. It describes Newton's thought in light of a number of scientific, technological, and metaphysical issues that arose in seventeenth‐century natural philosophy. The first section discusses some of the relevant context from the history of Galilean, mathematical natural philosophy, especially as exhibited by the work of Christiaan Huygens. The second section offers (...)
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  46. Theological Methodology, Classical Theism, and “Lived Time” in Antje Jackelén's Time and Eternity.James M. Byrne - 2009 - Zygon 44 (4):951-964.
    Abstract.Antje Jackelén's Time and Eternity successfully employs the method of correlation and a close study of the question of time to enter the dialogue between science and theology. Hermeneutical attention to language is a central element of this dialogue, but we must be aware that much science is untranslatable into ordinary language; it is when we get to the bigger metaphysical assumptions of science that true dialogue begins to happen. Thus, although the method of correlation is a useful (...)
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  47. (1 other version)Time in Cosmology.Chris Smeenk - 2013 - In Adrian Bardon & Heather Dyke (eds.), The Blackwell Companion to the Philosophy of Time. Wiley-Blackwell. pp. 201-219.
    This essay aims to provide a self-contained introduction to time in relativistic cosmology that clarifies both how questions about the nature of time should be posed in this setting and the extent to which they have been or can be answered empirically. The first section below recounts the loss of Newtonian absolute time with the advent of special and general relativity, and the partial recovery of absolute time in the form of cosmic time in (...)
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  48.  53
    Geometry, relativity, and philosophy: David Malament: Topics in the foundations of general relativity and Newtonian gravitation theory. Chicago: The University of Chicago Press, 2012, xii+368pp, $55.00 HB.Theophanes Grammenos - 2014 - Metascience 24 (1):141-145.
    David Malament, now emeritus at the University of California, Irvine, where since 1999 he served as a Distinguished Professor of Logic and Philosophy of Science after having spent twenty-three years as a faculty member at the University of Chicago , is well known as the author of numerous articles on the mathematical and philosophical foundations of modern physics with an emphasis on problems of space-time structure and the foundations of relativity theory. Malament’s Topics in the foundations of general relativity (...)
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  49. The mathematical structure of Newtonian spacetime: Classical dynamics and gravitation. [REVIEW]Waldyr A. Rodrigues, Quintino A. G. de Souza & Yuri Bozhkov - 1995 - Foundations of Physics 25 (6):871-924.
    We give a precise and modern mathematical characterization of the Newtonian spacetime structure (ℕ). Our formulation clarifies the concepts of absolute space, Newton's relative spaces, and absolute time. The concept of reference frames (which are “timelike” vector fields on ℕ) plays a fundamental role in our approach, and the classification of all possible reference frames on ℕ is investigated in detail. We succeed in identifying a Lorentzian structure on ℕ and we study the classical electrodynamics of Maxwell and (...)
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  50. Time and Duration: The Unexcluded Middle, or Reflections on Braudel and Prigogine.Immanuel Wallerstein - 1998 - Thesis Eleven 54 (1):79-87.
    One reason for the problematic status of the social sciences is that their claim to legitimacy has been undermined by two opposite models of inquiry: the nomothetic idea of science, with its emphasis on universal laws, and the idiographic conception of history as a record of particular events. It can be argued that both of them excluded the temporal dimension of socio-historical reality; more precisely, they were ill-equipped to analyze the unstable structures which emerge and undergo transformations over varying periods (...)
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