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  1. Time before time - classifications of universes in contemporary cosmology, and how to avoid the antinomy of the beginning and eternity of the world.Ruediger Vaas - unknown
    Did the universe have a beginning or does it exist forever, i.e. is it eternal at least in relation to the past? This fundamental question was a main topic in ancient philosophy of nature and the Middle Ages. Philosophically it was more or less banished then by Immanuel Kant's Critique of Pure Reason. But it used to have and still has its revival in modern physical cosmology both in the controversy between the big bang and steady state models some decades (...)
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  • Verdad y leyes de la naturaleza en la metodología de los programas de investigación científica.Bruno Borge - 2017 - Signos Filosóficos 19 (37):146-169.
    Resumen En la filosofía de Lakatos existe una tensión entre falibilismo y optimismo epistemológico. En el presente artículo propongo la reconstrucción de dos elementos clave para resolver positivamente esa tensión: una noción de verdad empírica, que neutralice el convencionalismo, y una noción de verdad parcial, que dé cuenta de la creciente verosimilitud de los programas de investigación. Para esto último, reviso un aspecto de la obra de Lakatos frecuentemente ignorado por los críticos: su posición en el debate acerca de las (...)
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  • Moral Laws, Laws of Nature and Dispositions.Danny Frederick - 2014 - Prolegomena: Journal of Philosophy 13 (2):303-14.
    It appears that light may be thrown on the nature of moral principles if they are construed as moral laws analogous to ceteris-paribus laws of nature. Luke Robinson objects that the analogy either cannot explain how moral principles are necessary or cannot explain how obligations can be pro-tanto; and that a dispositional account of moral obligation has explanatory superiority over one in terms of moral laws. I explain the analogy, construing laws of nature as necessary relationships after the fashion of (...)
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  • Do the Laws of Nature Entail Causal Closure? Response to Michael Esfeld.Daniel Von Wachter - 2019 - Organon F: Medzinárodný Časopis Pre Analytickú Filozofiu 26 (1):175-184.
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  • Peirce’s “method of tenacity” and the “method of science”: the consistency of pragmatism and naturalism.Mauro Dorato - unknown
    In 1877 Peirce distinguished four different methods of “fixating our beliefs”, among which I here concentrate on what could be called the “method of tenacity” and the “method of science”. I then use these distinctions to argue that despite their apparent conflict, pragmatism, relying on the method of tenacity, and naturalism, relying on the method of science, can and should coexist, both in science and in metaphysics.
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  • Singularitățile ca limite ontologice ale relativității generale.Nicolae Sfetcu - manuscript
    Singularitățile la care se ajunge în relativitatea generală prin rezolvarea ecuațiilor lui Einstein au fost și încă mai sunt subiectul a numeroase dezbateri științifice: Există sau nu, singularități? Big Bang a fost o singularitate inițială? Dacă singularitățile există, care este ontologia acestora? Este teoria generală a relativității o teorie care și-a arătat limitele în acest caz? În acest eseu argumentez faptul că există singularități, iar teoria generală a relativității, ca de altfel oricare altă teorie științifică din prezent, nu este valabilă (...)
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  • Categories and the Foundations of Classical Field Theories.James Owen Weatherall - forthcoming - In Elaine Landry (ed.), Categories for the Working Philosopher. Oxford, UK: Oxford University Press.
    I review some recent work on applications of category theory to questions concerning theoretical structure and theoretical equivalence of classical field theories, including Newtonian gravitation, general relativity, and Yang-Mills theories.
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  • 'No success like failure ...': Einstein's Quest for general relativity, 1907-1920.Michel Janssen - unknown
    This is the chapter on general relativity for the Cambridge Companion to Einstein which I am co-editing with Christoph Lehner.
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  • Relationism and relativity.Friedel Weinert - 2000 - Philosophy of Science 51:561-585.
    The line of argument pursued in this paper is to proceed from Einstein’s fundamental problem situation to a consideration of scientific representation with respect to the Special theory of relativity (STR). Einstein’s fundamental problem situation, which is Kantian in spirit, is how the conceptual freedom of the scientist is compatible with the need for an objective representation of an independently given material world. To solve this philosophical issue Einstein employs a number of constraints, which are central to the STR. The (...)
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  • Reconstructing reality: Environment-induced decoherence, the measurement problem, and the emergence of definiteness in quantum mechanics.Hanneke Janssen - unknown
    This work is a critique of the program of "environment-induced decoherence" as advocated by Zurek, Zeh and Joos, among others. In particular, the alleged relevance of decoherence for a solution of the "measurement problem" is subjected to a detailed philosophical analysis. In the first chapter, an attempt is made to unravel what exactly this "measurement problem" amounts to for the decoherence theorists. The second chapter reviews the standard decoherence literature. The third chapter starts with a brief discussion of the philosophical (...)
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  • The Causal Closure Argument is No Threat to Non-Reductive Physicalism.Peter Menzies - 2015 - Humana Mente 8 (29).
    Non-reductive physicalism is the view that mental events cause other events in virtue of their mental properties and that mental properties supervene on, without being identical to, physical properties. Jaegwon Kim has presented several much-discussed arguments against this view. But the much simpler causal closure argument, which purports to establish that every mental property is identical to a physical property, has received less attention than Kim’s arguments. This paper aims to show how a non-reductive physicalist should rebut the causal closure (...)
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  • Chance and time.Amit Hagar - 2004 - Dissertation, Ubc
    One of the recurrent problems in the foundations of physics is to explain why we rarely observe certain phenomena that are allowed by our theories and laws. In thermodynamics, for example, the spontaneous approach towards equilibrium is ubiquitous yet the time-reversal-invariant laws that presumably govern thermal behaviour in the microscopic level equally allow spontaneous departure from equilibrium to occur. Why are the former processes frequently observed while the latter are almost never reported? Another example comes from quantum mechanics where the (...)
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  • Ontological Motivation in Obtaining Certain Quantum Equations: A Case for Panexperientialism.Villacrés Juan - unknown
    In this work I argue for the existence of an ontological state in which no entity in it can be more basic than the others in such a state. This is used to provide conceptual justification for a method that is applied to obtain the Schr\"{o}dinger equation, the Klein-Gordon equation, and the Klein-Gordon equation for a particle in an electromagnetic field. Additionally, it is argued that the existence of such state is incompatible with indirect realism; and the discussion suggests that (...)
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  • On Time chez Dummett.Jeremy Butterfield - 2012 - European Journal of Analytic Philosophy 8 (1):77-102.
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  • Probability captures the logic of scientific confirmation.Patrick Maher - 2004 - In Christopher Hitchcock (ed.), Contemporary Debates in Philosophy of Science. Blackwell. pp. 69--93.
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  • When are universals? the relationship between universals and time.Ernâni Sobrinho Magalhães - unknown
    In Re realism is the two-pronged view that, first, when this and that have the same color, this color and that color are identical. There is just one color, the universal. Second, on the view, this color exists just in case something has it. Say my cat has the same color as the dog I owned when I was a child. Since the dog existed before the cat, and precedence being irreflexive, it seems plausible to infer that the dog and (...)
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  • Agencies, capacities, and anthropic self-selection.Milan M. Cirkovic - 2004 - In Margaret A. Simons, Marybeth Timmermann & Mary Beth Mader (eds.), Philosophical Writings. University of Illinois Press. pp. 27.
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  • When to defer to supermajority testimony — and when not.Christian List - 2014 - In Jennifer Lackey (ed.), Essays in Collective Epistemology. Oxford University Press. pp. 240-249.
    Pettit (2006) argues that deferring to majority testimony is not generally rational: it may lead to inconsistent beliefs. He suggests that “another ... approach will do better”: deferring to supermajority testimony. But this approach may also lead to inconsistencies. In this paper, I describe conditions under which deference to supermajority testimony ensures consistency, and conditions under which it does not. I also introduce the concept of “consistency of degree k”, which is weaker than full consistency by ruling out only “blatant” (...)
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  • An argument for P=NP.Selmer Bringsjord - manuscript
    Selmer Bringsjord & Joshua Taylor∗ Department of Cognitive Science Department of Computer Science The Rensselaer AI & Reasoning (RAIR) Lab Rensselaer Polytechnic Institute (RPI) Troy NY 12180 USA http://www.rpi.edu/∼brings {selmer,tayloj}@rpi.edu..
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  • What price determinism? The hole story!Dean Rickles - unknown
    In their modern classic ``What Price Substantivalism? The Hole Story'' Earman and Norton argued that substantivalism about spacetime points implies that general relativity is indeterministic and, for that reason, must be rejected as a candidate ontology for the theory. More recently, Earman has cottoned on to a related argument (in fact, related to a \emph{response} to the hole argument) that arises in the context of canonical general relativity, according to which the enforcing of determinism along standard lines---using the machinery of (...)
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  • Why did evolution engineer consciousness?Selmer Bringsjord & Ron Noel - 1998 - In Gregory R. Mulhauser (ed.), Evolving Consciousness. John Benjamins.
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  • Physics and Leibniz's principles.Simon Saunders - 2003 - In Katherine Brading & Elena Castellani (eds.), Symmetries in Physics: Philosophical Reflections. Cambridge University Press. pp. 289--307.
    It is shown that the Hilbert-Bernays-Quine principle of identity of indiscernibles applies uniformly to all the contentious cases of symmetries in physics, including permutation symmetry in classical and quantum mechanics. It follows that there is no special problem with the notion of objecthood in physics. Leibniz's principle of sufficient reason is considered as well; this too applies uniformly. But given the new principle of identity, it no longer implies that space, or atoms, are unreal.
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  • Coinciding Objects and Duration Properties: Reply to Eagle.Cody Gilmore - 2010 - In Dean Zimmerman (ed.), Oxford Studies in Metaphysics: Volume 5. Oxford University Press. pp. 95-111.
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  • Scientific explanation in quantum theory.Rob Clifton - unknown
    In this paper (which is, at best, a work in progress), I discuss different modes of scientific explanation identified by philosophers (Hempel, Salmon, Kitcher, Friedman, Hughes) and examine how well or badly they capture the "explanations" of phenomena that modern quantum theory provides. I tentatively conclude that quantum explanation is best seen as "structural explanation", and spell out in detail how this works in the case of explaining vacuum correlations. Problems and prospects for structural explanation in quantum theory are also (...)
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  • Scientific Realism and High Energy Physics.Richard Dawid - 2018 - In Juha Saatsi (ed.), The Routledge Handbook of Scientific Realism. Routledge. pp. 279-290.
    The paper discusses major implications of high energy physics for the scientific realism debate. The first part analyses the ways in which aspects of the empirically well-confirmed standard model of particle physics are relevant for a reassessment of entity realism, ontological realism and structural realism. The second part looks at the implications of more far-reaching concepts like string theory. While those theories have not found empirical confirmation, if they turned out viable, their implications for the realism debate would be more (...)
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  • Na czym polega upływ czasu?Jerzy Gołosz - 2012 - Diametros 34:2-21.
    Celem artykułu jest pokazanie, skąd się biorą nasze trudności z wyjaśnieniem, na czym polega upływ czasu, oraz przedstawienie pewnej propozycji rozwiązania tego problemu, opartej na koncepcji dynamicznego istnienia rzeczy, a rozwijającej ideę absolutnego stawania się. Rozważania oparte są na założeniu, że nasze podstawowe teorie metafizyczne – podobnie jak te stosowane w naukach przyrodniczych – powinny spełniać warunek spójności, prostoty oraz bogatej zawartości.
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  • Observational equivalence of deterministic and indeterministic descriptions and the role of different observations.Charlotte Werndl - 2012 - In Stephan Hartmann, Samir Okasha & Herman De Regt (eds.), Proceedings of the Second Conference of the European Philosophy of Science Association. Springer. pp. 427-439.
    Recently some results have been presented which show that certain kinds of deterministic descriptions and indeterministic descriptions are observationally equivalent (Werndl 2009a, 2010). This paper focuses on some philosophical questions prompted by these results. More specifically, first, I will discuss the philosophical comments made by mathematicians about observational equivalence, in particular Ornstein and Weiss (1991). Their comments are vague, and I will argue that, according to a reasonable interpretation, they are misguided. Second, the results on observational equivalence raise the question (...)
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  • Probing spacetime with a holographic relation between spacetime and entanglement.Rasmus Jaksland - unknown
    This paper introduces and examines the prospects of the recent research in a holographic relation between entanglement and spacetime pioneered by Mark van Raamsdonk and collaborators. Their thesis is that entanglement in a holographic quantum state is crucial for connectivity in its spacetime dual. Utilizing this relation, the paper develops a thought experiment that promises to probe the nature of spacetime by monitoring the behavior of a spacetime when all entanglement is removed between local degrees of freedom in its dual (...)
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  • General Relativity from A to B.James Owen Weatherall - 2018 - Humana Mente 4 (13).
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  • On the formal statement of the special principle of relativity.Marton Gomori & Laszlo E. Szabo - unknown
    The aim of the paper is to develop a proper mathematical formalism which can help to clarify the necessary conceptual plugins to the special principle of relativity and leads to a deeper understanding of the principle in its widest generality.
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  • A note on the "supposition dragon".Paul Vincent Spade - manuscript
    In the summer of 1980, I was privileged to be on the teaching staff of the Summer Institute on Medieval Philosophy held at Cornell University under the direction of Norman Kretzmann and the auspices of the Council for Philosophical Studies and the National Endowment for the Humanities. While I was giving a series of lectures on supposition theory, I went to my office one morning, and there under the door some anonymous wag from the Institute had slid the pen and (...)
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  • String Theory – Nomological Unification and the Epicycles of the Quantum Field Theory Paradigm.Reiner Hedrich - unknown
    String Theory is the result of the conjunction of three conceptually independent elements: the metaphysical idea of a nomological unity of the forces, the model-theoretical paradigm of Quantum Field Theory, and the conflict resulting from classical gravity in a quantum world - the motivational starting point of the search for a theory of Quantum Gravity. String Theory is sometimes assumed to solve this conflict: by means of an application of the model-theoretical apparatus of Quantum Field Theory, interpreting gravity as the (...)
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  • Is spacetime hole-free?John Manchak - 2008 - General Relativity and Gravitation.
    Here, we examine hole-freeness - a condition sometimes imposed to rule out seemingly artificial spacetimes. We show that under existing definitions (and contrary to claims made in the literature) there exist inextendible, globally hyperbolic spacetimes which fail to be hole-free. We then propose an updated formulation of the condition which enables us to show the intended result. We conclude with a few general remarks on the strength of the definition and then formulate a precise question which may be interpreted as: (...)
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  • Dynamic Beliefs and the Passage of Time.Darren Bradley - 2013 - In A. Capone & N. Feit (eds.), Attitudes De Se. University of Chicago.
    How should our beliefs change over time? Much has been written about how our beliefs should change in the light of new evidence. But that is not the question I’m asking. Sometimes our beliefs change without new evidence. I previously believed it was Sunday. I now believe it’s Monday. In this paper I discuss the implications of such beliefs for philosophy of language. I will argue that we need to allow for ‘dynamic’ beliefs, that we need new norms of belief (...)
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  • Philosophical problems of space-time theories.Gustavo E. Romero - 2012 - In Gravitation and Cosmology.
    I present a discussion of some open issues in the philosophy of space-time theories. Emphasis is put on the ontological nature of space and time, the relation between determinism and predictability, the origin of irreversible processes in an expanding Universe, and the compatibility of relativity and quantum mechanics. In particular, I argue for a Parmenidean view of time and change, I make clear the difference between ontological determinism and predictability, propose that the origin of the asymmetry observed in physical processes (...)
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  • Is quantum indeterminism relevant to free will?Michael Esfeld - 2000 - Philosophia Naturalis 37 (1):177-187.
    Quantum indeterminism may make available the option of an interactionism that does not have to pay the price of a force over and above those forces that are acknowledged in physics in order to explain how intentions can be physically effective. I show how this option might work in concrete terms and offer a criticism of it.
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  • Breaking the light speed barrier.Zurab Silagadze - unknown
    As it is well known, classical special relativity allows the existence of three different kinds of particles: bradyons, luxons and tachyons. Bradyons have non-zero mass and hence always travel slower than light. Luxons are particles with zero mass, like the photon, and they always travel with invariant velocity. Tachyons are hypothetical superluminal particles that always move faster than light. The existence of bradyons and luxons is firmly established, while the tachyons were never reliably observed. In quantum field theory, the appearance (...)
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  • Does quantum time have a preferred direction?Bryan W. Roberts - unknown
    This paper states and proves a precise sense in which, if all the measurable properties of an ordinary quantum mechanical system are ultimately derivable from position, then time in quantum mechanics can have no preferred direction. In particular, I show that when the position observable forms a complete set of commuting observables, Galilei invariant quantum mechanics is guaranteed to be time reversal invariant.
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  • Coordinates, observables and symmetry in relativity.Hans Westman & Sebastiano Sonego - unknown
    We investigate the interplay and connections between symmetry properties of equations, the interpretation of coordinates, the construction of observables, and the existence of physical relativity principles in spacetime theories. Using the refined notion of an event as a "point-coincidence" between scalar fields that completely characterise a spacetime model, we also propose a natural generalisation of the relational local observables that does not require the existence of four everywhere invertible scalar fields. The collection of all point-coincidences forms in generic situations a (...)
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  • Quantum gravity: Motivations and alternatives.Reiner Hedrich - unknown
    The mutual conceptual incompatibility between General Relativity and Quantum Mechanics / Quantum Field Theory is generally seen as the most essential motivation for the development of a theory of Quantum Gravity. It leads to the insight that, if gravity is a fundamental interaction and Quantum Mechanics is universally valid, the gravitational field will have to be quantized, not at least because of the inconsistency of semi-classical theories of gravity. The objective of a theory of Quantum Gravity would then be to (...)
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  • Chaos.Michael Strevens - 2006 - In D. M. Borchert (ed.), Encyclopedia of Philosophy, second edition.
    A physical system has a chaotic dynamics, according to the dictionary, if its behavior depends sensitively on its initial conditions, that is, if systems of the same type starting out with very similar sets of initial conditions can end up in states that are, in some relevant sense, very different. But when science calls a system chaotic, it normally implies two additional claims: that the dynamics of the system is relatively simple, in the sense that it can be expressed in (...)
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  • How to Use Quantum Theory Locally to Explain "Non-local" Correlations.Richard Healey - unknown
    This paper argues that there is no conflict between quantum theory and relativity, and that quantum theory itself helps us explain puzzling “non-local” correlations in a way that contradicts neither Bell’s intuitive locality principle nor his local causality condition. The argument depends on understanding quantum theory along pragmatist lines I have outlined elsewhere, and on a more general view of how that theory helps us explain. The key counterfactuals that hold in such cases manifest epistemic rather than causal connections between (...)
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  • First-order logic foundation of relativity theories.Judit X. Madarasz, Istvan Nemeti & Gergely Szekely - unknown
    Motivation and perspective for an exciting new research direction interconnecting logic, spacetime theory, relativity--including such revolutionary areas as black hole physics, relativistic computers, new cosmology--are presented in this paper. We would like to invite the logician reader to take part in this grand enterprise of the new century. Besides general perspective and motivation, we present initial results in this direction.
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  • The Phenomenology of Person Perception.Joel Krueger - 2014 - In Mark Bruhn & Donald Wehrs (eds.), Neuroscience, Literature, and History. Routledge. pp. 153-173.
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  • Filosofia e História da Biologia.Antonio Carlos Sequeira Fernandes, Ricardo Pereira, Ismar de Souza Carvalho, Débora de Almeida Azevedo, Fernando Dias de Avila-Pires, Gerda Maísa Jensen, Maria Elice Brzezinski Prestes, Lilian Al-Chueyr Pereira Martins, Lourdes Della Justina & Ana Maria de Andrade Caldeira - 2010 - Filosofia 5 (1).
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  • What Is a Black Hole?Erik Curiel - unknown
    Although black holes are objects of central importance across many fields of physics, there is no agreed upon definition for them, a fact that does not seem to be widely recognized. Physicists in different fields conceive of and reason about them in radically different, and often conflicting, ways. All those ways, however, seem sound in the relevant contexts. After examining and comparing many of the definitions used in practice, I consider the problems that the lack of a universally accepted definition (...)
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