Results for 'cosmological model'

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  1. Multiverse Cosmological Models.P. C. W. Davies - unknown
    Recent advances in string theory and inflationary cosmology have led to a surge of interest in the possible existence of an ensemble of cosmic regions, or “universes”, among the members of which key physical parameters, such as the masses of elementary particles and the coupling constants, might assume different values. The observed values in our cosmic region are then attributed to an observer selection effect (the so-called anthropic principle). The assemblage of universes has been dubbed “the multiverse”. In this paper (...)
     
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  2. Comparing Cosmological Models.Andrew Holster - manuscript
    The standard model of cosmology is acclaimed in physics as accurate, robust, well-tested, our best scientific theory of the cosmos, but it has had serious anomalies for a while, including the Hubble tension, anomalous galaxies, and the completely unexplained nature of dark energy and dark matter. And lurking behind it all is the lack of a unified theory: General Relativity (GR) and quantum mechanics (QM) are inconsistent. Now startling new observations by the James Webb Space Telescope (JWST) in 2022 (...)
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  3.  14
    Metaphysics of cosmological models.Vasile Chira - 2023 - HTS Theological Studies 79 (1):8.
    This article aims to address the metaphysical dimension of cosmological models, be they mythological, philosophical, religious or modern scientific, using multidisciplinary and transdisciplinary methodology. Such an approach is a novelty, both in the theological field and in the philosophical field and secular sciences, which studies the origin of man and the universe.Contribution: The originality of this article consists in introducing the concept of transcendental cosmology, which, along with spiritual cosmology can be a serious theological and philosophical reply to the (...)
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    Metaphysics of cosmological models.Vasile Chira - 2022 - HTS Theological Studies 78 (1):8.
    This article aims to address the metaphysical dimension of cosmological models, be they mythological, philosophical, religious or modern scientific, using multidisciplinary and transdisciplinary methodology. Such an approach is a novelty, both in the theological field and in the philosophical field and secular sciences, which studies the origin of man and the universe. Contribution: The originality of this article consists in introducing the concept of transcendental cosmology, which, along with spiritual cosmology can be a serious theological and philosophical reply to (...)
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  5.  21
    Can Cosmological Models Explain and Forecast the Public Health and Patterns of Somatic Alignments?Wei Zhang - 2015 - Philosophy East and West 65 (3):731-745.
    The symbiotic resonance of the planetary and psychosomatic bodies was one of the most ancient religious and philosophical assumptions in ancient China. A number of contemporary scholars have explored this assumption in various branches of Chinese thought. Here, I would like to investigate this ancient assumption further in relation to the classical medical traditions, arguing that it was the medical thinkers who first attempted a systematic treatment and modeling of the macrocosm and the somatic body as a microcosm. Specifically, I (...)
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  6. New cosmology model shows relativity in universal time and distant observations in Euclidean geometry.Tuomo Suntola - 2001 - Apeiron 8 (3):97.
  7.  55
    The Standard Cosmological Model: Achievements and Issues.George Ellis - 2018 - Foundations of Physics 48 (10):1226-1245.
    The present day standard cosmological model is a great theoretical achievement. This chapter surveys the main themes that have arisen and issues that are still oustanding.
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  8.  20
    A Steady Flow Cosmological Model from a Minimal Large Numbers Hypothesis.Juan Casado - 2011 - Apeiron: Studies in Infinite Nature 18 (3):297.
  9.  18
    Killing vectors in cosmological models with rotation.Thoralf Chrobok - 2000 - In M. Scherfner, T. Chrobok & M. Shefaat (eds.), Colloquium on Cosmic Rotation. Wissenschaft Und Technik Verlag. pp. 1--105.
  10.  60
    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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  11. A Derivation of Fluidic Maxwell-Proca Equations for Electrodynamics of Superconductors and Implication to Chiral Cosmology model.Victor Christianto, Florentin Smarandache & Yunita Umniyati - manuscript
    In a rather old paper, Mario Liu described a hydrodynamic Maxwell equations. While he also discussed potential implications of these new approaches to superconductors, such a discussion of electrodynamics of superconductors is made only after Tajmar’s paper. Therefore, in this paper we present for the first time a derivation of fluidic Maxwell-Proca equations. The name of fluidic Maxwell-Proca is proposed because the equations were based on modifying Maxwell-Proca and Hirsch’s theory of electrodynamics of superconductor. It is hoped that this paper (...)
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  12. The earth as cosmological model for the final myth in platon'phedon'.Jf Pradeau - 1996 - Revue Philosophique de la France Et de L Etranger 121 (1):75-105.
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  13.  7
    Generation as μίμησις and κόσμος as μίμημα: Cosmological Model, Productive Function and the Arrangement of the χώρα in Plato’s Timaeus.Francesco Fronterotta - 2021 - In Julia Pfefferkorn & Antonino Spinelli (eds.), Platonic Mimesis Revisited. Academia – ein Verlag in der Nomos Verlagsgesellschaft. pp. 275-290.
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  14.  18
    Class of Exact Solutions for a Cosmological Model of Unified Gravitational and Quintessence Fields.Sergio A. Hojman & Felipe A. Asenjo - 2017 - Foundations of Physics 47 (7):887-896.
    A new approach to tackle Einstein equations for an isotropic and homogeneous Friedmann–Robertson–Walker Universe in the presence of a quintessence scalar field is devised. It provides a way to get a simple exact solution to these equations. This solution determines the quintessence potential uniquely and it differs from solutions which have been used to study inflation previously. It relays on a unification of geometry and dark matter implemented through the definition of a functional relation between the scale factor of the (...)
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  15.  19
    Interpreting cosmic no hair theorems: Is fatalism about the far future of expanding cosmological models unavoidable?Juliusz Doboszewski - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 66:170-179.
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  16.  21
    On the Origin of Anaximander’s Cosmological Model.Gerard Naddaf - 1998 - Journal of the History of Ideas 59 (1):1-28.
  17. The Aquinas's criticism of the cosmological models of the 13th century : a step in the developement of scientific skepticism - Revista Española de Filosofía Medieval.Ana Maria C. Minecan - 2016 - Revista Española de Filosofía Medieval 23:217-228.
    This article analyzes the treatment of natural philosophy in the work of Thomas Aquinas from the point of view of assimilation of the Aristotelian physical corpus. It focuses primarily on the Aquinas’s defense of the conception of the fallibility of the natural reason, the provisional and revisable character of all physical theories, the necessity of intercultural dialogue to discover the truths about nature, and Aquinas’s role in the development of the skeptical attitude in scientific research of the mobile’s world.
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  18.  9
    On the origin of Anaximander's cosmological model (vol 59, pg 1, 1998).G. Naddaf - 1998 - Journal of the History of Ideas 59 (2):377-377.
  19. Non-standard models and the sociology of cosmology.Martín López-Corredoira - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (1):86-96.
    I review some theoretical ideas in cosmology different from the standard “Big Bang”: the quasi-steady state model, the plasma cosmology model, non-cosmological redshifts, alternatives to non-baryonic dark matter and/or dark energy, and others. Cosmologists do not usually work within the framework of alternative cosmologies because they feel that these are not at present as competitive as the standard model. Certainly, they are not so developed, and they are not so developed because cosmologists do not work on (...)
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  20.  95
    The Bohmian Model of Quantum Cosmology.Craig Callender & Robert Weingard - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:218 - 227.
    A realist causal model of quantum cosmology (QC) is developed. By applying the de Broglie-Bohm interpretation of quantum mechanics to QC, we resolve the notorious 'problem of time' in QC, and derive exact equations of motion for cosmological dynamical variables. Due to this success, it is argued that if the situation in QC is used as a yardstick by which other interpretations are measured, the de Broglie-Bohm theory seems uniquely fit as an interpretation of quantum mechanics.
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  21. Can We Justifiably Assume the Cosmological Principle in Order to Break Model Underdetermination in Cosmology?Claus Beisbart - 2009 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 40 (2):175-205.
    If cosmology is to obtain knowledge about the whole universe, it faces an underdetermination problem: Alternative space-time models are compatible with our evidence. The problem can be avoided though, if there are good reasons to adopt the Cosmological Principle (CP), because, assuming the principle, one can confine oneself to the small class of homogeneous and isotropic space-time models. The aim of this paper is to ask whether there are good reasons to adopt the Cosmological Principle in order to (...)
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  22. On models in cosmology.T. Sierotowicz - 1996 - Verifiche: Rivista Trimestrale di Scienze Umane 25 (1):73-95.
  23. Ecological and cosmological coexistence thinking in a hypervariable environment: causal models of economic success and failure among farmers, foragers, and fishermen of southwestern Madagascar.Bram Tucker, Tsiazonera, Jaovola Tombo, Patricia Hajasoa & Charlotte Nagnisaha - 2015 - Frontiers in Psychology 6:149727.
    A fact of life for farmers, hunter-gatherers, and fishermen in the rural parts of the world are that crops fail, wild resources become scarce, and winds discourage fishing. In this article we approach subsistence risk from the perspective of "coexistence thinking," the simultaneous application of natural and supernatural causal models to explain subsistence success and failure. In southwestern Madagascar, the ecological world is characterized by extreme variability and unpredictability, and the cosmological world is characterized by anxiety about supernatural dangers. (...)
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  24.  15
    A cosmologic context of meditation. The buddhist model of the world.B. Koehler - 2006 - Archeus. Studia Z Bioetyki I Antropologii Filozoficznej 7:125-131.
  25.  4
    The Standard Model of Cosmology as a Tool for Interpretation and Discovery.Andreas Bartels - 2013 - In Ulrich Gähde, Stephan Hartmann & Jörn Henning Wolf (eds.), Models, Simulations, and the Reduction of Complexity. Boston: De Gruyter. pp. 23-28.
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  26. Cosmology: What One Needs to Know.John R. Albright - 2000 - Zygon 35 (1):173-180.
    Cosmology, the study of the universe, has a past, which is reviewed here. The standard model—the Big Bang, or the hot, dense early universe that is still expanding—is based on observations that are basically consistent but which require additional input to improve the agreement. Out of the early universe came the galaxies and stars that shine today. The future of the universe depends on the density of matter: too much mass leads to the Big Crunch; too little leads to (...)
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  27.  1
    Cosmology: What One Needs to Know.John R. Albright - 2000 - Zygon 35 (1):173-180.
    Cosmology, the study of the universe, has a past, which is reviewed here. The standard model—the Big Bang, or the hot, dense early universe that is still expanding—is based on observations that are basically consistent but which require additional input to improve the agreement. Out of the early universe came the galaxies and stars that shine today. The future of the universe depends on the density of matter: too much mass leads to the Big Crunch; too little leads to (...)
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  28. Cosmology and convention.David Merritt - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 57:41-52.
    I argue that some important elements of the current cosmological model are 'conventionalist’ in the sense defined by Karl Popper. These elements include dark matter and dark energy; both are auxiliary hypotheses that were invoked in response to observations that falsified the standard model as it existed at the time.
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  29.  15
    The ancient cosmology as a model of physical reality.Sergey Poroykov - 2016 - Journal of Philosophical Researchжурнал Философских Исследований 2 (3):2-2.
  30.  6
    The One Mind Model of Quantum Reality: Whitehead, God, Theories of Mind, Evolution, and Cosmology.Mark Germine - 2010 - Tattva - Journal of Philosophy 2 (1):1-24.
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  31. Robert Grosseteste's cosmology of light and light-metaphors: A symbolic model for a sacred space?Cecilia Panti - 2014 - In Nicholas Temple, John Hendrix & Christia Frost (eds.), Bishop Robert Grosseteste and Lincoln Cathedral: tracing relationships between medieval concepts of order and built form. Ashgate.
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  32.  28
    Bouncing Cosmologies: Progress and Problems.Robert Brandenberger & Patrick Peter - 2017 - Foundations of Physics 47 (6):797-850.
    We review the status of bouncing cosmologies as alternatives to cosmological inflation for providing a description of the very early universe, and a source for the cosmological perturbations which are observed today. We focus on the motivation for considering bouncing cosmologies, the origin of fluctuations in these models, and the challenges which various implementations face.
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  33. Models in Science (2nd edition).Roman Frigg & Stephan Hartmann - 2021 - The Stanford Encyclopedia of Philosophy.
    Models are of central importance in many scientific contexts. The centrality of models such as inflationary models in cosmology, general-circulation models of the global climate, the double-helix model of DNA, evolutionary models in biology, agent-based models in the social sciences, and general-equilibrium models of markets in their respective domains is a case in point (the Other Internet Resources section at the end of this entry contains links to online resources that discuss these models). Scientists spend significant amounts of time (...)
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  34.  32
    Three problems about multi-scale modelling in cosmology.Michela Massimi - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 64:26-38.
  35. Tests and Problems of the Standard Model in Cosmology.Martín López-Corredoira - 2017 - Foundations of Physics 47 (6):711-768.
    The main foundations of the standard \CDM model of cosmology are that: the redshifts of the galaxies are due to the expansion of the Universe plus peculiar motions; the cosmic microwave background radiation and its anisotropies derive from the high energy primordial Universe when matter and radiation became decoupled; the abundance pattern of the light elements is explained in terms of primordial nucleosynthesis; and the formation and evolution of galaxies can be explained only in terms of gravitation within a (...)
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  36. Consistent Histories in Quantum Cosmology.David Craig & Parampreet Singh - 2011 - Foundations of Physics 41 (3):371-379.
    We illustrate the crucial role played by decoherence (consistency of quantum histories) in extracting consistent quantum probabilities for alternative histories in quantum cosmology. Specifically, within a Wheeler-DeWitt quantization of a flat Friedmann-Robertson-Walker cosmological model sourced with a free massless scalar field, we calculate the probability that the universe is singular in the sense that it assumes zero volume. Classical solutions of this model are a disjoint set of expanding and contracting singular branches. A naive assessment of the (...)
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  37.  5
    Reconstruction of f(R) Gravity from Cosmological Unified Dark Fluid Model.Esraa Ali Elkhateeb - 2024 - Foundations of Physics 54 (1):1-19.
    In this work, we reconstruct the cosmological unified dark fluid model proposed previously by Elkhateeb (Astrophys Space Sci 363(1):7, 2018) in the framework of _f_(_R_) gravity. Utilizing the equivalence between the scalar-tensor theory and the _f_(_R_) gravity theory, the scalar field for the dark fluid is obtained, whence the _f_(_R_) function is extracted and its viability is discussed. The _f_(_R_) functions and the scalar field potentials have then been extracted in the early and late times of asymptotically de (...)
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  38. Cosmological horizons and entropy.P. C. W. Davies - unknown
    An analogue of Hawking's black hole area theorem is proved for Friedmann-type cosmological models with event horizons. The generalised second law of thermodynamics is investigated in cases where the horizon shrinks.
     
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  39.  68
    Cosmological Black Holes and the Direction of Time.Gustavo E. Romero, Federico G. López Armengol & Daniela Pérez - 2018 - Foundations of Science 23 (2):415-426.
    Macroscopic irreversible processes emerge from fundamental physical laws of reversible character. The source of the local irreversibility seems to be not in the laws themselves but in the initial and boundary conditions of the equations that represent the laws. In this work we propose that the screening of currents by black hole event horizons determines, locally, a preferred direction for the flux of electromagnetic energy. We study the growth of black hole event horizons due to the cosmological expansion and (...)
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  40.  10
    Cosmology and Politics in Plato's Later Works.Dominic J. O'Meara - 2017 - New York: Cambridge University Press.
    Knowledge of the structure of the cosmos, Plato suggests, is important in organizing a human community which aims at happiness. This book investigates this theme in Plato's later works, the Timaeus, Statesman, and Laws. Dominic J. O'Meara proposes fresh readings of these texts, starting from the religious festivals and technical and artistic skills in the context of which Plato elaborates his cosmological and political theories, for example the Greek architect's use of models as applied by Plato in describing the (...)
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  41.  26
    Cosmological Density Perturbations in Newtonian- and MONDian Gravity Scenario: A Symmetry-Based Approach.Amitava Choudhuri & Aritra Ganguly - 2019 - Foundations of Physics 49 (1):63-82.
    We investigate the evolution of linear density contrasts obtained with respect to a homogeneous spatially flat Friedman-Lemaître–Robertson–Walker background by solving the density contrast equations governed by Newtonian and MONDian force laws using symmetry-based approach. We find eight-parameter Lie group symmetries for the linear order density perturbation equation for the Newtonian case whereas the density contrast equation follows only one parameter Lie group symmetry in MONDian case. We use Lie symmetries to find the group invariant solutions from invariant curve condition. The (...)
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  42. On under-determination in cosmology.Jeremy Butterfield - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (1):57-69.
    I discuss how modern cosmology illustrates under-determination of theoretical hypotheses by data, in ways that are different from most philosophical discussions. I emphasise cosmology's concern with what data could in principle be collected by a single observer ; and I give a broadly sceptical discussion of cosmology's appeal to the cosmological principle as a way of breaking the under-determination.I confine most of the discussion to the history of the observable universe from about one second after the Big Bang, as (...)
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  43. 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 some cosmological models. Section II (...)
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  44.  32
    A Comment on ‘Cosmology and Convention’ by David Merritt.Man Ho Chan - 2019 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 50 (2):283-296.
    In a recent article Merritt has claimed that current observational data provide “severe tests” falsifying the standard cosmological model. Based on Popper’s idea of conventionalism, he concludes that the introduction of some essential components of the standard cosmological model—including dark matter and dark energy—are a consequence of conventionalist stratagems. In this article, I provide more recent discoveries and discussions showing that the standard cosmological model is not built on any conventionalist stratagem.
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  45. Quantum cosmology and the beginning of the universe.Gerrit Smith & Robert Weingard - 1990 - Philosophy of Science 57 (4):663-667.
    In this note a recently developed quantum oscillating finite space cosmological model is described. The principle novelty of the model is that there is a quantum blurring of the classical singularity between cycles, instead of a singularity free bounce. Recently, Quentin Smith (1988) has argued that present theoretical and observational evidence justifies the belief that the past history of the universe is finite. The relevance of this cosmological model to Smith's arguments is discussed.
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  46. Stability in Cosmology, from Einstein to Inflation.C. D. McCoy - 2020 - In Claus Beisbart, Tilman Sauer & Christian Wüthrich (eds.), Thinking About Space and Time: 100 Years of Applying and Interpreting General Relativity. Cham: Birkhäuser. pp. 71-89.
    I investigate the role of stability in cosmology through two episodes from the recent history of cosmology: Einstein’s static universe and Eddington’s demonstration of its instability, and the flatness problem of the hot big bang model and its claimed solution by inflationary theory. These episodes illustrate differing reactions to instability in cosmological models, both positive ones and negative ones. To provide some context to these reactions, I also situate them in relation to perspectives on stability from dynamical systems (...)
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  47. A Scenario for a Natural Origin of Our Universe Using a Mathematical Model Based on Established Physics and Cosmology.Victor J. Stenger - 2006 - Philo 9 (2):93-102.
    A mathematical model of the natural origin of our universe is presented. The model is based only on well-established physics. No claim is made that this model uniquely represents exactly how the universe came about. But the viability of a single model serves to refute any assertions that the universe cannot have come about by natural means.
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  48. Probabilistic Reasoning in Cosmology.Yann Benétreau-Dupin - 2015 - Dissertation, The University of Western Ontario
    Cosmology raises novel philosophical questions regarding the use of probabilities in inference. This work aims at identifying and assessing lines of arguments and problematic principles in probabilistic reasoning in cosmology. -/- The first, second, and third papers deal with the intersection of two distinct problems: accounting for selection effects, and representing ignorance or indifference in probabilistic inferences. These two problems meet in the cosmology literature when anthropic considerations are used to predict cosmological parameters by conditionalizing the distribution of, e.g., (...)
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  49.  59
    Inducing the Cosmological Constant from Five-Dimensional Weyl Space.José Edgar Madriz Aguilar & Carlos Romero - 2009 - Foundations of Physics 39 (11):1205-1216.
    We investigate the possibility of inducing the cosmological constant from extra dimensions by embedding our four-dimensional Riemannian space-time into a five-dimensional Weyl integrable space. Following the approach of the space-time-matter theory we show that when we go down from five to four dimensions, the Weyl field may contribute both to the induced energy-tensor as well as to the cosmological constant Λ, or more generally, it may generate a time-dependent cosmological parameter Λ(t). As an application, we construct a (...)
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  50. Underdetermination in Cosmology: an Invitation.Jeremy Butterfield - 2012 - Aristotelian Society Supplementary Volume 86 (1):1-18.
    I discuss how modern cosmology illustrates underdetermination of theoretical hypotheses by data, in ways that are different from most philosophical discussions. I confine the discussion to the history of the observable universe from about one second after the Big Bang, as described by the mainstream cosmological model: in effect, what cosmologists in the early 1970s dubbed the ‘standard model’, as elaborated since then. Or rather, the discussion is confined to a (very!) few aspects of that history. I (...)
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