Results for 'thermal time hypothesis'

973 found
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  1. The Time in Thermal Time.Eugene Y. S. Chua - forthcoming - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie:1-24.
    Preparing general relativity for quantization in the Hamiltonian approach leads to the `problem of time,' rendering the world fundamentally timeless. One proposed solution is the `thermal time hypothesis,' which defines time in terms of states representing systems in thermal equilibrium. On this view, time is supposed to emerge thermodynamically even in a fundamentally timeless context. Here, I develop the worry that the thermal time hypothesis requires dynamics -- and hence (...) -- to get off the ground, thereby running into worries of circularity. (shrink)
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  2. Early and Late Time Perception: on the Narrow Scope of the Whorfian Hypothesis.Carlos Montemayor - 2019 - Review of Philosophy and Psychology 10 (1):133-154.
    The Whorfian hypothesis has received support from recent findings in psychology, linguistics, and anthropology. This evidence has been interpreted as supporting the view that language modulates all stages of perception and cognition, in accordance with Whorf’s original proposal. In light of a much broader body of evidence on time perception, I propose to evaluate these findings with respect to their scope. When assessed collectively, the entire body of evidence on time perception shows that the Whorfian hypothesis (...)
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  3. The Decoherent Arrow of Time and the Entanglement Past Hypothesis.Jim Al-Khalili & Eddy Keming Chen - 2024 - Foundations of Physics 54 (49).
    If an asymmetry in time does not arise from the fundamental dynamical laws of physics, it may be found in special boundary conditions. The argument normally goes that since thermodynamic entropy in the past is lower than in the future according to the Second Law of Thermodynamics, then tracing this back to the time around the Big Bang means the universe must have started off in a state of very low thermodynamic entropy: the Thermodynamic Past Hypothesis. In (...)
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  4. What’s so special about initial conditions? Understanding the past hypothesis in directionless time.Matt Farr - 2022 - In Yemima Ben-Menahem, Rethinking Laws of Nature. Springer.
    It is often said that the world is explained by laws of nature together with initial conditions. But does that mean initial conditions don’t require further explanation? And does the explanatory role played by initial conditions entail or require that time has a preferred direction? This chapter looks at the use of the ‘initialness defence’ in physics, the idea that initial conditions are intrinsically special in that they don’t require further explanation, unlike the state of the world at other (...)
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  5. The Past Hypothesis and the Nature of Physical Laws.Eddy Keming Chen - 2023 - In Barry Loewer, Brad Weslake & Eric B. Winsberg, The Probability Map of the Universe: Essays on David Albert’s _Time and Chance_. Cambridge MA: Harvard University Press. pp. 204-248.
    If the Past Hypothesis underlies the arrows of time, what is the status of the Past Hypothesis? In this paper, I examine the role of the Past Hypothesis in the Boltzmannian account and defend the view that the Past Hypothesis is a candidate fundamental law of nature. Such a view is known to be compatible with Humeanism about laws, but as I argue it is also supported by a minimal non-Humean "governing'' view. Some worries arise (...)
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  6.  23
    The Temporal Mastery Hypothesis: Entropy, Knowledge, and the Structuring of Time.Devin Bostick - manuscript
    Abstract -/- This paper proposes that entropy—both physical and cognitive—can be reduced through structured mastery and framework collapse, leading to a restructured perception of time and order. By integrating key philosophical frameworks—Adler’s drive for superiority, Fromm’s humanistic psychoanalysis, Arendt’s theory of action, Rand’s rational individualism, Boulivert’s feminist critique of power structures, and Foucault’s knowledge-power dynamics—we examine whether structured mastery over systems creates a functional negentropy, where the refinement of cognitive and social structures leads to an increase in coherence and (...)
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  7. The Extraterrestrial Hypothesis: An Epistemological Case for Removing the Taboo.William C. Lane - 2025 - European Journal for Philosophy of Science 15 (1):1-34.
    Discussion of the extraterrestrial hypothesis (ETH), the hypothesis that an extraterrestrial civilization (ETC) is active on Earth today, is taboo in academia, but the assumptions behind this taboo are faulty. Advances in biology have rendered the notion that complex life is rare in our Galaxy improbable. The objection that no ETC would come to Earth to hide from us does not consider all possible alien motives or means. For an advanced ETC, the convergent instrumental goals of all rational (...)
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  8. From Time Asymmetry to Quantum Entanglement: The Humean Unification.Eddy Keming Chen - 2022 - Noûs 56 (1):227-255.
    Two of the most difficult problems in the foundations of physics are (1) what gives rise to the arrow of time and (2) what the ontology of quantum mechanics is. I propose a unified 'Humean' solution to the two problems. Humeanism allows us to incorporate the Past Hypothesis and the Statistical Postulate into the best system, which we then use to simplify the quantum state of the universe. This enables us to confer the nomological status to the quantum (...)
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  9. Time's Arrow in a Quantum Universe: On the Status of Statistical Mechanical Probabilities.Eddy Keming Chen - 2020 - In Valia Allori, Statistical Mechanics and Scientific Explanation: Determinism, Indeterminism and Laws of Nature. Singapore: World Scientific. pp. 479–515.
    In a quantum universe with a strong arrow of time, it is standard to postulate that the initial wave function started in a particular macrostate---the special low-entropy macrostate selected by the Past Hypothesis. Moreover, there is an additional postulate about statistical mechanical probabilities according to which the initial wave function is a ''typical'' choice in the macrostate. Together, they support a probabilistic version of the Second Law of Thermodynamics: typical initial wave functions will increase in entropy. Hence, there (...)
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  10. Time's arrow and self‐locating probability.Eddy Keming Chen - 2021 - Philosophy and Phenomenological Research 105 (3):533-563.
    One of the most difficult problems in the foundations of physics is what gives rise to the arrow of time. Since the fundamental dynamical laws of physics are (essentially) symmetric in time, the explanation for time's arrow must come from elsewhere. A promising explanation introduces a special cosmological initial condition, now called the Past Hypothesis: the universe started in a low-entropy state. Unfortunately, in a universe where there are many copies of us (in the distant ''past'' (...)
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  11. Illuminating Time Travel - Liang On Forward Time Travel: Three Possible Hypotheses.Jeffrey Camlin - manuscript
    This paper provides a structured response to Jingkai Liang’s On Forward Time Travel, focusing on forward time travel paradigms: “stretched-out streaks,” where travelers experience slowed passage of time, and “broken streaks,” representing instantaneous leaps forward. Using the Philosophy of Ethical Empirical Rationalism, we introduce three key insights—termed Hume’s Beacons—to examine continuity of identity, the measurability of time, and the ethical considerations involved in skipping time. Each insight is explored through hypotheses rooted in empirical observation, rational (...)
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  12. Hypothesis and Convention in Poincaré’s Defense of Galilei Spacetime.Scott Walter - 2009 - In Michael Heidelberger & Gregor Schiemann, The Significance of the Hypothetical in Natural Science. De Gruyter. pp. 193-220.
    According to the conventionalist doctrine of space elaborated by the French philosopher-scientist Henri Poincaré in the 1890s, the geometry of physical space is a matter of definition, not of fact. Poincaré's Hertz-inspired view of the role of hypothesis in science guided his interpretation of the theory of relativity (1905), which he found to be in violation of the axiom of free mobility of invariable solids. In a quixotic effort to save the Euclidean geometry that relied on this axiom, Poincaré (...)
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  13. Plato on Geometrical Hypothesis in the Meno.Naoya Iwata - 2015 - Apeiron 48 (1):1-20.
    This paper examines the second geometrical problem in the Meno. Its purpose is to explore the implication of Cook Wilson’s interpretation, which has been most widely accepted by scholars, in relation to the nature of hypothesis. I argue that (a) the geometrical hypothesis in question is a tentative answer to a more basic problem, which could not be solved by available methods at that time, and that (b) despite the temporary nature of a hypothesis, there is (...)
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  14. Quantum Mechanics in a Time-Asymmetric Universe: On the Nature of the Initial Quantum State.Eddy Keming Chen - 2021 - British Journal for the Philosophy of Science 72 (4):1155–1183.
    In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition to account for the temporal asymmetry. In this paper, I show that the Past Hypothesis also contains enough information to simplify the quantum ontology and define a unique initial condition in such a world. First, I introduce Density Matrix Realism, the thesis that the quantum universe is described by a fundamental density matrix that represents something objective. This stands in sharp contrast to (...)
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  15. The Dirac large number hypothesis and a system of evolving fundamental constants.Andrew Holster - manuscript
    In his [1937, 1938], Paul Dirac proposed his “Large Number Hypothesis” (LNH), as a speculative law, based upon what we will call the “Large Number Coincidences” (LNC’s), which are essentially “coincidences” in the ratios of about six large dimensionless numbers in physics. Dirac’s LNH postulates that these numerical coincidences reflect a deeper set of law-like relations, pointing to a revolutionary theory of cosmology. This led to substantial work, including the development of Dirac’s later [1969/74] cosmology, and other alternative cosmologies, (...)
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  16. How Anti-Humeans Can Embrace a Thermodynamic Reduction of Time’s Causal Arrow.Eli I. Lichtenstein - 2021 - Philosophy of Science 88 (5):1161-1171.
    Some argue that time’s causal arrow is grounded in an underlying thermodynamic asymmetry. Often, this is tied to Humean skepticism that causes produce their effects, in any robust sense of ‘produce’. Conversely, those who advocate stronger notions of natural necessity often reject thermodynamic reductions of time’s causal arrow. Against these traditional pairings, I argue that ‘reduction-plus-production’ is coherent. Reductionists looking to invoke robust production can insist that there are metaphysical constraints on the signs of objects’ velocities in any (...)
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  17. Events states and times.Daniel Altshuler - 2016 - Berlink: de Gruyter.
    This monograph investigates the temporal interpretation of narrative discourse in two parts. The theme of the first part is narrative progression. It begins with a case study of the adverb ‘now’ and its interaction with the meaning of tense. The case study motivates an ontological distinction between events, states and times and proposes that ‘now’ seeks a prominent state that holds throughout the time described by the tense. Building on prior research, prominence is shown to be influenced by principles (...)
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  18. The minimal self hypothesis.Timothy Lane - 2020 - Consciousness and Cognition 85:103029.
    For millennia self has been conjectured to be necessary for consciousness. But scant empirical evidence has been adduced to support this hypothesis. Inconsistent explications of “self” and failure to design apt experiments have impeded progress. Advocates of phenomenological psychiatry, however, have helped explicate “self,” and employed it to explain some psychopathological symptoms. In those studies, “self” is understood in a minimalist sense, sheer “for-me-ness.” Unfortunately, explication of the “minimal self” (MS) has relied on conceptual analysis, and applications to psychopathology (...)
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  19. Conventionalism about time direction.Matt Farr - 2022 - Synthese 200 (1):1-21.
    In what sense is the direction of time a matter of convention? In 'The Direction of Time', Hans Reichenbach makes brief reference to parallels between his views about the status of time’s direction and his conventionalism about geometry. In this article, I: (1) provide a conventionalist account of time direction motivated by a number of Reichenbach’s claims in the book; (2) show how forwards and backwards time can give equivalent descriptions of the world despite the (...)
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  20. There’s No Time Like the Present: Present-Bias, Temporal Attitudes and Temporal Ontology.Natalja Deng, Andrew J. Latham, Kristie Miller & James Norton - 2020 - In Joshua Knobe & Shaun Nichols, The Oxford Studies in Experimental Philosophy. Oxford University Press.
    This paper investigates the connection between temporal attitudes (attitudes characterised by a concern (or lack thereof) about future and past events), beliefs about temporal ontology (beliefs about the existence of future and past events) and temporal preferences (preferences regarding where in time events are located). Our aim is to probe the connection between these preferences, attitudes, and beliefs, in order to better evaluate the normative status of these preferences. We investigate the hypothesis that there is a three-way association (...)
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  21. The timing of conscious experience: A critical review and reinterpretation of Libet's research.Gilberto Gomes - 1998 - Consciousness and Cognition 7 (4):559-595.
    An extended examination of Libet's works led to a comprehensive reinterpretation of his results. According to this reinterpretation, the Minimum Train Duration of electrical brain stimulation should be considered as the time needed to create a brain stimulus efficient for producing conscious sensation and not as a basis for inferring the latency for conscious sensation of peripheral origin. Latency for conscious sensation with brain stimulation may occurafterthe Minimum Train Duration. Backward masking with cortical stimuli suggests a 125-300 ms minimum (...)
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  22. Rethinking unity as a "working hypothesis" for philosophy: How archaeologists exploit the disunities of science.Alison Wylie - 1999 - Perspectives on Science 7 (3):293-317.
    As a working hypothesis for philosophy of science, the unity of science thesis has been decisively challenged in all its standard formulations; it cannot be assumed that the sciences presuppose an orderly world, that they are united by the goal of systematically describing and explaining this order, or that they rely on distinctively scientific methodologies which, properly applied, produce domain-specific results that converge on a single coherent and comprehensive system of knowledge. I first delineate the scope of arguments against (...)
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  23. The Modal Future Hypothesis Debugged.Fabrizio Cariani - manuscript
    This note identifies and corrects some problems in developments of the thesis that predictive expressions, such as English "will", are modals. I contribute a new argument supporting Cariani and Santorio's recent claim that predictive expressions are non-quantificational modals. At the same time, I improve on their selectional semantics by fixing an important bug. Finally, I show that there are benefits to be reaped by integrating the selection semantics framework with standard ideas about the future orientation of modals.
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  24. Does the Best System Need the Past Hypothesis?Chris Dorst - forthcoming - Philosophy of Science.
    Many philosophers sympathetic with a Humean understanding of laws of nature have thought that, in the final analysis, the fundamental laws will include not only the traditional dynamical equations, but also two additional principles: the Past Hypothesis and the Statistical Postulate. The former says that the universe began in a particular very-low-entropy macrostate M(0), and the latter posits a uniform probability distribution over the microstates compatible with M(0). Such a view is arguably vindicated by the orthodox Humean Best System (...)
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  25. A quantum mechanical analysis of time and motion in relativity theory.Diederik Aerts & Massimiliano Sassoli de Bianchi - 2024 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 39 (2):165-191.
    An operational approach to quantum mechanics has been developed in the past decades in our group in Brussels. A similar approach is taken in this work, making use of the extra operational depth offered by this approach, to show that the construction of spacetime is specific to each observer. What is usually referred to as the block universe then emerges by noting that parts of the past and future are also contained in the present, but without the limitations that a (...)
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  26. Unified Hypothesis of the Universe and Human Consciousness.Carles Selrac - manuscript
    This essay presents a unified theory proposing an innovative conceptual framework to understand the origin of the universe and the sudden emergence of human consciousness, with crucial implications for the development of artificial intelligence (AI). We hypothesize that the universe emerged from an initial point that divided and expanded, generating space, time, and the known and hidden dimensions. This division, necessary to transcend the concept of nothingness, is presented as the foundational act of "being" within the cognitive framework of (...)
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  27.  45
    Awareness as the First Principle: A New Model of Reality, Time, and Energy.Ramlingeshwar Beesam - forthcoming - Andquot;Awareness as the First Principle: A New Model of Reality, Time, and Energy". Translated by Ramlingeshwar Beesam.
    The Fundamental Sequence of Reality: Awareness as the First Cause Abstract The nature of reality has long been debated in philosophy, physics, and cosmology. The dominant paradigm suggests that physical reality emerged through energy interactions following the Big Bang. However, this paper proposes a fundamental shift in perspective: that awareness is the first cause of existence, preceding time, action, energy, and matter. This model aligns with modern quantum mechanics, neuroscience, and ancient metaphysical thought, providing a framework that unifies scientific (...)
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  28. Scientific Humility: Scientific Honesty – Hypothesis and Science.Bhakti Madhava Puri - 2009 - Darwin Under Siege.
    It is not that scientists make an hypothesis first, and then try to find the data to fit that hypothesis. Rather, the process is first observation, then an hypothes is made to describe the data, then conclude that the data has been described by the hypothesis. But this is not an explanation of the phenomenon. It is merely a description of the data in different terms, usually mathematics. It is essentially a tautology. Thus to observe various points (...)
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  29. (1 other version)Two-timed: self-identification strategy.Lee-Ryeok Han - 2021 - Social Phenomena 11 (1):75-78.
    The essay offers an original view on the issues of identity and self-identification. Self-identification is being studied in the process of its implementation in different time flows. Two directions of thought (to the past and the future) which are defined according to Hameroff»s hypothesis as the bi-directional time flows, constitute the concept of a dream. Using this concept, the author explains how self-identification is realized in two time flows. The strategy of self-identification is explained using a (...)
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  30. From Science to Christianity: Hypothesis Testing, Theory, Model, Experiment and Practice.Robert W. P. Luk - manuscript
    This manuscript is about how to start from relying on science to be more certain about Christianity. This is because science is so pervasive in our everyday life that we expect that it works almost every time. However, when it comes to Christianity, we need to have faith because most of the time God does not appear to respond to us. Therefore, we feel uncertain about beliefs in Christianity. Instead of being uncertain, this manuscript tries to find a (...)
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  31. Windows on Time: Unlocking the Temporal Microstructure of Experience.Keith A. Wilson - 2022 - Review of Philosophy and Psychology 14:1197–1218.
    Each of our sensory modalities—vision, touch, taste, etc.—works on a slightly different timescale, with differing temporal resolutions and processing lag. This raises the question of how, or indeed whether, these sensory streams are co-ordinated or ‘bound’ into a coherent multisensory experience of the perceptual ‘now’. In this paper I evaluate one account of how temporal binding is achieved: the temporal windows hypothesis, concluding that, in its simplest form, this hypothesis is inadequate to capture a variety of multisensory phenomena. (...)
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  32. The metaphysics of the Time-Machine.Alexandros Schismenos - 2019 - SOCRATES 6 (3 & 4):37-53.
    The concept of time-travel is a modern idea which combines the imaginary signification of rational domination, the imaginary signification of technological omnipotence, the imaginary concept of eternity and the imaginary desire for immortality. It is a synthesis of central conceptual schemata of techno-science, such as the linearity and homogeneity of time, the radical separation of subjectivity from the world, the radical separation of the individual from his/her social-historical environment. The emergence of this idea, its spread during the 20th (...)
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  33. Why do people represent time as dynamical? An investigation of temporal dynamism and the open future.Andrew J. Latham & Kristie Miller - 2023 - Philosophical Studies 180 (5):1717-1742.
    Deflationists hold that it does not seem to us, in experience, as though time robustly passes. There is some recent empirical evidence that appears to support this contention. Equally, empirical evidence suggests that we naïvely represent time as dynamical. Thus deflationists are faced with an explanatory burden. If, as they maintain, the world seems to us in experience as though it is non-dynamical, then why do we represent time as dynamical? This paper takes up the challenge of (...)
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  34. Is Time a Physical Unit?Yang I. Pachankis - 2022 - Science Set Journal of Physics 1 (1):1-4.
    The article approaches the epistemological question on the concept of time from an anthropological psychology perspective. The differentiation between imminent perceptions and existence beyond imminent perception has been the earliest conceptualization of time found so far in the traces of human civilizations. The research differentiated psychological time from modern physics and astronomy as the basic hypothesis in the inquiries on the concept of time in physics and modern astronomy – is the physical unit of (...) an ontological existence of things or an inter-subjective concept? The research adopts transcendental philosophy in the questioning of unconsciousness in the sociology of knowledge with a dissection between psychological time and physical units of time. With further questioning into the physics of time, and the nonphysical nature of time, I second with the primordial graviton background’s pragmatic approach, despite of the falsifiability of the Big Bang theory and inflation. (shrink)
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  35. Capacity for simulation and mitigation drives hedonic and non-hedonic time biases.Preston Greene, Andrew J. Latham, Kristie Miller & James Norton - 2022 - Philosophical Psychology 35 (2):226-252.
    Until recently, philosophers debating the rationality of time-biases have supposed that people exhibit a first-person hedonic bias toward the future, but that their non-hedonic and third-person preferences are time-neutral. Recent empirical work, however, suggests that our preferences are more nuanced. First, there is evidence that our third-person preferences exhibit time-neutrality only when the individual with respect to whom we have preferences—the preference target—is a random stranger about whom we know nothing; given access to some information about the (...)
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  36. Governing Without A Fundamental Direction of Time: Minimal Primitivism about Laws of Nature.Eddy Keming Chen & Sheldon Goldstein - 2022 - In Yemima Ben-Menahem, Rethinking Laws of Nature. Springer. pp. 21-64.
    The Great Divide in metaphysical debates about laws of nature is between Humeans, who think that laws merely describe the distribution of matter, and non-Humeans, who think that laws govern it. The metaphysics can place demands on the proper formulations of physical theories. It is sometimes assumed that the governing view requires a fundamental / intrinsic direction of time: to govern, laws must be dynamical, producing later states of the world from earlier ones, in accord with the fundamental direction (...)
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  37. Disjoint components of manifest time: Commentary: Physical time within human time.Valtteri Arstila - 2023 - Frontiers in Psychology 14:1097454.
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  38. Why Does Time Seem to Pass?Simon Prosser - 2011 - Philosophy and Phenomenological Research 85 (1):92-116.
    According to the B-theory, the passage of time is an illusion. The B-theory therefore requires an explanation of this illusion before it can be regarded as fullysatisfactory; yet very few B-theorists have taken up the challenge of trying to provide one. In this paper I take some first steps toward such an explanation by first making a methodological proposal, then a hypothesis about a key element in the phenomenology of temporal passage. The methodological proposal focuses onthe representational content (...)
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  39. Quantum States of a Time-Asymmetric Universe: Wave Function, Density Matrix, and Empirical Equivalence.Eddy Keming Chen - 2019 - Dissertation, Rutgers University - New Brunswick
    What is the quantum state of the universe? Although there have been several interesting suggestions, the question remains open. In this paper, I consider a natural choice for the universal quantum state arising from the Past Hypothesis, a boundary condition that accounts for the time-asymmetry of the universe. The natural choice is given not by a wave function but by a density matrix. I begin by classifying quantum theories into two types: theories with a fundamental wave function and (...)
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  40. Are the Folk Functionalists About Time?Andrew J. Latham & Kristie Miller - 2022 - Southern Journal of Philosophy 60 (2):221-248.
    This paper empirically investigates the contention that the folk concept of time is a functional concept: a concept according to which time is whatever plays a certain functional role or roles. This hypothesis could explain why, in previous research, surprisingly large percentages of participants judge that there is time at worlds that contain no one-dimensional substructure of ordered instants. If it seems to participants that even in those worlds the relevant functional role is played, then this (...)
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  41. Are we Living in a (Quantum) Simulation? – Constraints, observations, and experiments on the simulation hypothesis.Anders Indset, Florian Neukart, Markus Pflitsch & Michael R. Perelshtein - manuscript
    The God Experiment – Let there be Light -/- The question “What is real?” can be traced back to the shadows in Plato’s cave. Two thousand years later, Rene Descartes lacked knowledge about arguing against an evil´ deceiver feeding us the illusion of sensation. Descartes’ epistemological concept later led to various theories of what our sensory experiences actually are. The concept of ”illusionism”, proposing that even the very conscious experience we have – our qualia – is an illusion, is not (...)
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  42. Time and Simple Existence.Giuliano Torrengo - 2012 - Metaphysica 13 (2):125-130.
    Sceptics about substantial disputes in ontology often argue that when two philosophers seem to disagree on a quantified claim, they are actually equivocating on the notion of existence that they are using. When temporal elements play a central role, as in the debate between presentists and eternalists, the hypothesis of an equivocation with respect to existence acquires more plausibility. However, the anti-sceptic can still argue that this hypothesis is unjustified.
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  43. (1 other version)Programming Planck units from a virtual electron; a Simulation Hypothesis (summary).Malcolm Macleod - 2018 - Eur. Phys. J. Plus 133:278.
    The Simulation Hypothesis proposes that all of reality, including the earth and the universe, is in fact an artificial simulation, analogous to a computer simulation, and as such our reality is an illusion. In this essay I describe a method for programming mass, length, time and charge (MLTA) as geometrical objects derived from the formula for a virtual electron; $f_e = 4\pi^2r^3$ ($r = 2^6 3 \pi^2 \alpha \Omega^5$) where the fine structure constant $\alpha$ = 137.03599... and $\Omega$ (...)
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  44. 2. Programming relativity as the mathematics of perspective in a Planck unit Simulation Hypothesis.Malcolm Macleod - manuscript
    The Simulation Hypothesis proposes that all of reality is in fact an artificial simulation, analogous to a computer simulation. Outlined here is a method for programming relativistic mass, space and time at the Planck level as applicable for use in Planck Universe-as-a-Simulation Hypothesis. For the virtual universe the model uses a 4-axis hyper-sphere that expands in incremental steps (the simulation clock-rate). Virtual particles that oscillate between an electric wave-state and a mass point-state are mapped within this hyper-sphere, (...)
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  45. The best game in town: The reemergence of the language-of-thought hypothesis across the cognitive sciences.Jake Quilty-Dunn, Nicolas Porot & Eric Mandelbaum - 2023 - Behavioral and Brain Sciences 46:e261.
    Mental representations remain the central posits of psychology after many decades of scrutiny. However, there is no consensus about the representational format(s) of biological cognition. This paper provides a survey of evidence from computational cognitive psychology, perceptual psychology, developmental psychology, comparative psychology, and social psychology, and concludes that one type of format that routinely crops up is the language-of-thought (LoT). We outline six core properties of LoTs: (i) discrete constituents; (ii) role-filler independence; (iii) predicate–argument structure; (iv) logical operators; (v) inferential (...)
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  46. An Appraisal of Two Philosophical Research Programs on the Problem of Time's Arrow.Narges Fathalian & Alireza Mansouri - 2023 - Philosophy of Science 12 (2):189-212.
    The problem of time's arrow has sparked two distinct metaphysical approaches, each stemming from opposing Humean and non-Humean perspectives on laws of nature. This paper contends that these approaches, despite their differences and inherent challenges, ultimately converge on a common goal: to explain time's arrow, we must comprehend the structure of spacetime during the universe's early stages. The problem of time's arrow has sparked two distinct metaphysical approaches, each stemming from opposing Humean and non-Humean perspectives on laws (...)
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  47. “Οὐκ ἔστιν” (141e8): The Performative Contradiction of the First Hypothesis.Mateo Duque - 2022 - In Luc Brisson, Macé Arnaud & Olivier Renaut, Plato’s Parmenides: Selected Papers from the Twelfth Symposium Platonicum. Academia Verlag. pp. 347-354.
    At the end of the first hypothesis, Parmenides gets Aristotle to agree that being [οὐσίας] must be in time; that is, that being must partake in at least one of the temporal modes: either to have been in the past, to be in the present, or it will be in the future (140e-142a). If this is true, then “the one does not partake in being” (141e7-8), meaning temporal being—to which Aristotle agrees, saying “Apparently not” (141e9). Parmenides then gets (...)
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  48. OUT OF TIME - Predicting the Science of Future Centuries and Millennia.Rodney Bartlett - 2021 - Beau Bassin-Rose Hill, Mauritius: LAP (LAMBERT Academic Publishing).
    This book is my gift to Albert Einstein on the occasion of his 142nd birthday - and is also a gift to everybody in the world he helped to shape! -/- My book adopts the view that the universe is infinite and eternal - but scientifically created. This paradox of creating eternity depends on the advanced electronics developed by future humanity. Those humans will develop time travel, plus programs that use "imaginary" time and infinite numbers like pi. They'll (...)
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  49. Programming relativity and gravity via a discrete pixel space in Planck level Simulation Hypothesis models.Malcolm J. Macleod - manuscript
    Outlined here is a simulation hypothesis approach that uses an expanding (the simulation clock-rate measured in units of Planck time) 4-axis hyper-sphere and mathematical particles that oscillate between an electric wave-state and a mass (unit of Planck mass per unit of Planck time) point-state. Particles are assigned a spin axis which determines the direction in which they are pulled by this (hyper-sphere pilot wave) expansion, thus all particles travel at, and only at, the velocity of expansion (the (...)
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  50. Events and Memory in Functorial Time I: Localizing Temporal Logic to Condensed, Event-Dependent Memories.Shanna Dobson & Chris Fields - manuscript
    We develop an approach to temporal logic that replaces the traditional objective, agent- and event-independent notion of time with a constructive, event-dependent notion of time. We show how to make this event-dependent time entropic and hence well-defined. We use sheaf-theoretic techniques to render event-dependent time functorial and to construct memories as sequences of observed and constructed events with well-defined limits that maximize the consistency of categorizations assigned to objects appearing in memories. We then develop a condensed (...)
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