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  1. Many-worlds interpretation of quantum mechanics.Lev Vaidman - 2008 - Stanford Encyclopedia of Philosophy.
    The Many-Worlds Interpretation (MWI) is an approach to quantum mechanics according to which, in addition to the world we are aware of directly, there are many other similar worlds which exist in parallel at the same space and time. The existence of the other worlds makes it possible to remove randomness and action at a distance from quantum theory and thus from all physics.
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  • String theory, Einstein, and the identity of physics: Theory assessment in absence of the empirical.Jeroen van Dongen - 2021 - Studies in History and Philosophy of Science Part A 89:164-176.
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  • (1 other version)World Enough and Form: Why Cosmology Needs Hylomorphism.John G. Brungardt - 2019 - Synthese (Suppl 11):1-33.
    This essay proposes a comprehensive blueprint for the hylomorphic foundations of cosmology. The key philosophical explananda in cosmology are those dealing with global processes and structures, the regularity of global regularities, and the existence of the global as such. The possibility of elucidating these using alternatives to hylomorphism is outlined and difficulties with these alternatives are raised. Hylomorphism, by contrast, provides a sound philosophical ground for cosmology insofar as it leads to notions of cosmic essence, the unity of complex essences, (...)
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  • Beyond Falsifiability: Normal Science in a Multiverse.Sean M. Carroll - 2019 - In Dawid Richard, Dardashti Radin & Thebault Karim (eds.), Epistemology of Fundamental Physics: Why Trust a Theory? Cambridge University Press.
    Cosmological models that invoke a multiverse - a collection of unobservable regions of space where conditions are very different from the region around us - are controversial, on the grounds that unobservable phenomena shouldn't play a crucial role in legitimate scientific theories. I argue that the way we evaluate multiverse models is precisely the same as the way we evaluate any other models, on the basis of abduction, Bayesian inference, and empirical success. There is no scientifically respectable way to do (...)
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  • (1 other version)World enough and form: why cosmology needs hylomorphism.John G. Brungardt - 2021 - Synthese 198 (11):2795-2827.
    This essay proposes a comprehensive blueprint for the hylomorphic foundations of cosmology. The key philosophical explananda in cosmology are those dealing with global processes and structures, the regularity of global regularities, and the existence of the global as such. The possibility of elucidating these using alternatives to hylomorphism is outlined and difficulties with these alternatives are raised. Hylomorphism, by contrast, provides a sound philosophical ground for cosmology insofar as it leads to notions of cosmic essence, the unity of complex essences, (...)
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  • On Modern Cosmology and its Place in Science Education.Helge Kragh - 2011 - Science & Education 20 (3-4):343-357.
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  • Can Science Investigate the Supernatural? An investigation into the relationship between science, the supernatural and religion.Jonathan Winthrop - unknown
    Throughout the last century there has been much discussion over what it is that makes an activity or a theory 'scientific'. In the philosophy of science, conversation has focused on differentiating legitimate science from so-called 'pseudoscience'. In the broader cultural sphere this topic has received attention in multiple legal debates regarding the status of creationism, where it has been generally agreed that the 'supernatural' nature of the claims involved renders them unscientific. In this thesis I focus upon the latter of (...)
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  • (1 other version)Testability and epistemic shifts in modern cosmology.Helge Kragh - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (1):48-56.
    During the last decade new developments in theoretical and speculative cosmology have reopened the old discussion of cosmology's scientific status and the more general question of the demarcation between science and non-science. The multiverse hypothesis, in particular, is central to this discussion and controversial because it seems to disagree with methodological and epistemic standards traditionally accepted in the physical sciences. But what are these standards and how sacrosanct are they? Does anthropic multiverse cosmology rest on evaluation criteria that conflict with (...)
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  • EVAAN: An empirical verification argument against naturalism.Ward Blondé - 2023 - Logos. Anales Del Seminario de Metafísica [Universidad Complutense de Madrid, España] 56 (2):345-362.
    Alvin Plantinga’s evolutionary argument against naturalism (EAAN) claims that if both naturalism (N) and evolutionary theory (E) are true, then all our beliefs are unreliable (premiss 1). Consequently, given N&E, the belief in N&E is unreliable (premiss 2) and N&E is self-defeating (conclusion). The empirical verification argument against naturalism (EVAAN) is more cautious and improves EAAN by withstanding a rejoinder of the evolutionary naturalist to premiss 1. EVAAN claims that non-abstract beliefs that are not empirically verifiable are unreliable, given N&E (...)
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  • The frontiers of empirical science: A Thomist-inspired critique of scientism.Callum Scott - 2016 - HTS Theological Studies 72 (3):10.
    Scientistic conceptualisations hold to the positivistic positions that science is limitless in its potential representations of material phenomena and that it is the only sure path to knowledge. In recent popular scientific literature, these presuppositions have been reaffirmed to the detriment of both philosophy and theology. This article argues for the contrary position by a meta-analysis of empirical science from a Thomist perspective. Identifying empirical science as limited in its method and bound to the material sphere of being alone, we (...)
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  • (1 other version)Testability and epistemic shifts in modern cosmology.Helge Kragh - 2012 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46:48-56.
    During the last decade new developments in theoretical and speculative cosmology have reopened the old discussion of cosmology’s scientific status and the more general question of the demarcation between science and non-science. The multiverse hypothesis, in particular, is central to this discussion and controversial because it seems to disagree with methodological and epistemic standards traditionally accepted in the physical sciences. But what are these standards and how sacrosanct are they? Does anthropic multiverse cosmology rest on evaluation criteria that conflict with (...)
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  • Some Trends in the Philosophy of Physics.Henrik Zinkernagel - 2011 - Theoria 26 (2):215-241.
    A short review of some recent developments in the philosophy of physics is presented. I focus on themes which illustrate relations and points of common interest between philosophy of physics and three of its `neighboring' elds: Physics, metaphysics and general philosophy of science. The main examples discussed in these three `border areas' are decoherence and the interpretation of quantum mechanics; time in physics and metaphysics; and methodological issues surrounding the multiverse idea in modern cosmology.
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  • “Why These Laws?”—Multiverse Discourse as a Scene of Response.Jacob Pearce - 2017 - Perspectives on Science 25 (3):324-354.
    By the end of the twentieth century, many prominent cosmologists were fascinated by the questions why is the universe the way it is, and why does the universe appear to be just right for life to emerge.1 Indeed, the shift to posing questions beginning with why rather than what or how is a relatively recent development in modern cosmology. This paper begins by looking at the emergence of why questions in cosmological discourse by tracing affiliated anthropic reasoning and fine-tuning arguments (...)
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  • Constraints and divergent assessments of fertility in non-empirical physics in the history of the string theory controversy.Sophie Ritson - 2021 - Studies in History and Philosophy of Science Part A 90 (C):39-49.
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  • Cosmology: Methodological debates in the 1930s and 1940s.George Gale - 2008 - Stanford Encyclopedia of Philosophy.
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