Results for 'Physicists'

243 found
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  1. Physicists Don't Yet Understand Color Qualities (2nd edition).Brent Allsop - 2023 - Journal of Neuralphilosophy 2 (1).
    You can demonstrate a subjective quality like redness is different from red light. If you add a device that converts a red signal into a green one, between the retina and the optic nerve, the strawberry will seem green. It’s not about light hitting the retina, it’s about how the signal is processed. In this case, the greenness must be a quality of our conscious knowledge of the strawberry, not of the red light landing on the retina. If you use (...)
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  2. The Physicist and the Philosopher.Rodney Bartlett - manuscript
    This is a brief discussion I started in the "Questions" section of ResearchGate's website. It's largely based on posts by Valentyn Nastasenko (the Physicist) and myself (the Philosopher), with just a few minor additions to make my position clearer. Topics include "Intergalactic and time travel via division by zero" as well as "Computer Science Brings Changes to Medicine and Physics That Give Everyone in History Eternal Life NOW".
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  3. The philosopher versus the physicist: Susan Stebbing on Eddington and the passage of time.Peter West - 2021 - British Journal for the History of Philosophy 30 (1):130-151.
    In this paper, I provide the first in-depth discussion of Susan Stebbing’s views concerning our experience of the passage of time – a key issue for many metaphysicians writing in the first half of the twentieth century. I focus on Stebbing’s claims about the passage of time in Philosophy and the Physicists and her disagreement with Arthur Eddington over how best to account for that experience. I show that Stebbing’s concern is that any attempt to provide a scientific account (...)
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  4. Bridgman and the Normative Independence of Science: An Individual Physicist in the Shadow of the Bomb.Mahmoud Jalloh - 2024 - Synthese 203 (141):1-24.
    Physicist Percy Bridgman has been taken by Heather Douglas to be an exemplar defender of an untenable value-free ideal for science. This picture is complicated by a detailed study of Bridgman's philosophical views of the relation between science and society. The normative autonomy of science, a version of the value-free ideal, is defended. This restriction on the provenance of permissible values in science is given a basis in Bridgman's broader philosophical commitments, most importantly, his view that science is primarily an (...)
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  5. An International Physicist and a Dedicated Proponent Of Sikhism - Prof. Hardev Singh Virk.Devinder Pal Singh - 2020 - The Sikh Review 68 (5):61-69.
    Having served as an educationist and administrator for over forty-two years, at various prestigious educational institutions in India, he has also established himself as an eminent writer in the field of Sikh theology. Through his literary essays, as published in several reputed journals, magazines, books, and newspapers, he has been able to create an indelible mark of scholarship on the minds of his readers. Besides, he has published about one dozen books related to Sikhism. He has been honoured for his (...)
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  6. Physicists in Conflict by Neil A. Porter. [REVIEW]Val Dusek - 2001 - Isis 92:369-370.
    Review of work on several debates, including Galileo vs. the Church, Bohr vs Einstein, Hoyle vs. Big Bang theory, Oppenheimer vs. Teller, N-rays, magnetic monopoles.
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  7. Assyrian Merchants meet Nuclear Physicists: History of the Early Contributions from Social Sciences to Computer Science. The Case of Automatic Pattern Detection in Graphs (1950s-1970s).Sébastien Plutniak - 2021 - Interdisciplinary Science Reviews 46 (4):547-568.
    Community detection is a major issue in network analysis. This paper combines a socio-historical approach with an experimental reconstruction of programs to investigate the early automation of clique detection algorithms, which remains one of the unsolved NP-complete problems today. The research led by the archaeologist Jean-Claude Gardin from the 1950s on non-numerical information and graph analysis is retraced to demonstrate the early contributions of social sciences and humanities. The limited recognition and reception of Gardin's innovative computer application to the humanities (...)
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  8. Philosophical Humor: Featuring Physicists.Haikel Mubarek - manuscript
    What follows is a whole new package of philosophical humor. But the question is: Is it possible to extract an abstract out of humor? I don’t think so. So let’s go to the little smiles directly. -/- .
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  9. The Many-Faceted Enigma of Time: A Physicist's Perspective.Bernard Carr - 2023 - In The Mystery of Time (13th Symposium of Bial Foundation: Behind and Beyond the Brain). Porto: Bial Foundation. pp. 97-118.
    The problem of time involves an overlap between physics, philosophy, psychology and neuroscience. My talk will discuss the role of time in physics but also emphasize that physics may need to expand to address issues usually regarded as being in the other domains. I will first review the mainstream physics view of time, as it arises in Newtonian theory, relativity theory and quantum theory. I will then discuss the various arrows of time, the most fundamental of which is the passage (...)
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  10. Two paradigms for religious representation: The physicist and the playground.Neil Van Leeuwen - 2017 - Cognition 164 (C):206-211.
    In an earlier issue, I argue (2014) that psychology and epistemology should distinguish religious credence from factual belief. These are distinct cognitive attitudes. Levy (2017) rejects this distinction, arguing that both religious and factual “beliefs” are subject to “shifting” on the basis of fluency and “intuitiveness.” Levy’s theory, however, (1) is out of keeping with much research in cognitive science of religion and (2) misrepresents the notion of factual belief employed in my theory. So his claims don’t undermine my distinction. (...)
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  11. Sekstus Empiryk, Przeciw fizykom. Przeciw etykom (Translation, introduction and commentary to Sextus Empiricus, Against the physicists. Against the ethicists).Zbigniew Nerczuk - 2010 - Wydawnictwo Marek Derewiecki.
    Polish translation, introduction and commentary to Sextus Empiricus, Against the physicists. Against the ethicists.
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  12. Weimar culture, causality, and quantum theory, 1918-1927: Adaptation by German physicists and mathematicians to a hostile intellectual environment. [REVIEW]Paul Forman - 1971 - Historical Studies in the Physical Sciences 3 (1).
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  13. Biblical Faith and the Mindset of the Physicist.Chris Thron - 2001 - Quodlibet 3.
    Several principles of investigative thought which physicists have learned through experience can be advantageously applied to Christian theology as well. We provide several practical examples of these principles' usefulness in a physical context, and show applications of the same principles to persistent questions in Christian theology.
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  14.  89
    History and Foundations of Physical Theories. The Physicists’ Missed Path for Discovering the Foundations of Science.Antonino Drago - manuscript
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  15. Review of R. Bett (trans.), Sextus Empiricus: Against the Physicists (CUP, 2012). [REVIEW]Diego E. Machuca - 2014 - British Journal for the History of Philosophy 22 (3):614-617.
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  16. BOOK REVIEW: Jimena Canales, The Physicist and the Philosopher: Einstein, Bergson and the Debate that Changed our Understanding of Time. [REVIEW]Dimitris Kilakos - 2017 - Almagest (1):129-132.
    Einstein’s relativity and its reception is definitely a prominent option for a case-study aiming to highlight the impact of the socio-cultural environment to the formulation of the scientific image of the world and other aspects of the worldview of a given era. Indeed, Einstein’s relativity clearly marked the course of 20th-century science, changed our view and shaped our experience of time.
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  17. Sense-data and the mind–body problem.Gary Hatfield - 2004 - In Ralph Schumacher (ed.), Perception and Reality: From Descartes to the Present. Mentis. pp. 305--331.
    The first two sections of the paper characterize the nineteenth century respect for the phenomenal by considering Helmholtz’s position and James’ and Russell’s move to neutral monism. The third section displays a moment’s sympathy with those who recoiled from the latter view -- but only a moment’s. The recoil overshot what was a reasonable response, and denied the reality of the phenomenal, largely in the name of the physical or the material. The final two sections of the paper develop a (...)
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  18. What Do Symmetries Tell Us About Structure?Thomas William Barrett - 2017 - Philosophy of Science (4):617-639.
    Mathematicians, physicists, and philosophers of physics often look to the symmetries of an object for insight into the structure and constitution of the object. My aim in this paper is to explain why this practice is successful. In order to do so, I present a collection of results that are closely related to (and in a sense, generalizations of) Beth’s and Svenonius’ theorems.
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  19. The criterion for time symmetry of probabilistic theories and the reversibility of quantum mechanics.Andrew Thomas Holster - 2003 - New Journal of Physics 5 (130).
    Physicists routinely claim that the fundamental laws of physics are 'time symmetric' or 'time reversal invariant' or 'reversible'. In particular, it is claimed that the theory of quantum mechanics is time symmetric. But it is shown in this paper that the orthodox analysis suffers from a fatal conceptual error, because the logical criterion for judging the time symmetry of probabilistic theories has been incorrectly formulated. The correct criterion requires symmetry between future-directed laws and past-directed laws. This criterion is formulated (...)
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  20. How to predict future duration from present age.Bradley Monton & Brian Kierland - 2006 - Philosophical Quarterly 56 (222):16-38.
    The physicist J. Richard Gott has given an argument which, if good, allows one to make accurate predictions for the future longevity of a process, based solely on its present age. We show that there are problems with some of the details of Gott's argument, but we defend the core thesis: in many circumstances, the greater the present age of a process, the more likely a longer future duration.
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  21. Can Typicality Arguments Dissolve Cosmology’s Flatness Problem?C. D. McCoy - 2017 - Philosophy of Science 84 (5):1239-1252.
    Several physicists, among them Hawking, Page, Coule, and Carroll, have argued against the probabilistic intuitions underlying fine-tuning arguments in cosmology and instead propose that the canonical measure on the phase space of Friedman-Robertson-Walker space-times should be used to evaluate fine-tuning. They claim that flat space-times in this set are actually typical on this natural measure and that therefore the flatness problem is illusory. I argue that they misinterpret typicality in this phase space and, moreover, that no conclusion can be (...)
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  22. The Copernican Principle, Intelligent Extraterrestrials, and Arguments from Evil.Samuel Ruhmkorff - 2019 - Religious Studies 55:297-317.
    The physicist Richard Gott defends the Copernican principle, which claims that when we have no information about our position along a given dimension among a group of observers, we should consider ourselves to be randomly located among those observers in respect to that dimension. First, I apply Copernican reasoning to the distribution of evil in the universe. I then contend that evidence for intelligent extraterrestrial life strengthens four important versions of the argument from evil. I remain neutral regarding whether this (...)
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  23. Manifesto of Transdisciplinarity.Basarab Nicolescu - 2002 - SUNY Press.
    Theoretical physicist Nicolescu (CNRS and U. of Paris, France) employs a view of the universe found in quantum physics to build his argument as to how basic spiritual questions may be answered and the problems of humanity, such as greed and the dichotomy between rich and poor, can be overcome. His method is called transdisciplinarity because it requires a way of thinking that rises above and beyond the methods of individual disciplines, seeing multiple levels of meaning rather than simple dichotomies. (...)
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  24. Neo-Lorentzian Relativity and the Beginning of the Universe.Daniel Linford - 2021 - European Journal for Philosophy of Science 11 (4):1-38.
    Many physicists have thought that absolute time became otiose with the introduction of Special Relativity. William Lane Craig disagrees. Craig argues that although relativity is empirically adequate within a domain of application, relativity is literally false and should be supplanted by a Neo-Lorentzian alternative that allows for absolute time. Meanwhile, Craig and co-author James Sinclair have argued that physical cosmology supports the conclusion that physical reality began to exist at a finite time in the past. However, on their view, (...)
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  25. Evil twins and the multiverse: distinguishing the world of difference between epistemic and physical possibility.Mark Satta - 2021 - Synthese 198 (2):1153-1160.
    Physicists Brian Greene and Max Tegmark both make variants of the claim that if the universe is infinite and matter is roughly uniformly distributed, then there are infinitely many “people with the same appearance, name and memories as you, who play out every possible permutation of your life choices.” In this paper I argue that--while our current best theories in astrophysics may allow one to conclude that we have infinitely many duplicates whose lives are identical to our own from (...)
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  26.  83
    My Journey in Science (Autobiography of An Indian Scientist): Book Review. [REVIEW]Devinder Pal Singh - 2019 - The Sikh Review 67:79-84.
    Autobiographical books of Punjabi Scientists are a rare genre. "My Journey In Science" by internationally acclaimed scientist Professor Hardev Singh Virk is a welcome addition to this category. Prof. Hardev Singh Virk, a multifaceted personality, is an eminent Physicist, an ardent researcher, an eloquent orator, a passionate poet, and a globe trotter. In addition, he is a devout Sikh, a renowned Sikh theologian, and a prolific writer in many areas of Science, Religion, and Literature. On reading “Up Against Odds”, the (...)
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  27. Godel, Escherian Staircase and Possibility of Quantum Wormhole With Liquid Crystalline Phase of Iced-Water - Part I: Theoretical Underpinning.Victor Christianto, T. Daniel Chandra & Florentin Smarandache - 2023 - Bulletin of Pure and Applied Sciences 42 (2):70-75.
    As a senior physicist colleague and our friend, Robert N. Boyd, wrote in a journal (JCFA, Vol. 1,. 2, 2022), Our universe is but one page in a large book [4]. For example, things and Beings can travel between Universes, intentionally or unintentionally. In this short remark, we revisit and offer short remark to Neil’s ideas and trying to connect them with geometrization of musical chords as presented by D. Tymoczko and others, then to Escher staircase and then to Jacob’s (...)
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  28. The Quantum Measurement Problem - Collapse of the Wave Function explained.Rochelle Marianne Forrester - unknown
    Quantum physicists have made many attempts to solve the quantum measurement problem, but no solution seems to have received widespread acceptance. The time has come for a new approach. In Sense Perception and Reality: A Theory of Perceptual Relativity, Quantum Mechanics and the Observer Dependent Universe I suggest the quantum measurement problem is caused by a failure to understand that each species has its own sensory world and that when we say the wave function collapses and brings a particle (...)
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  29. The ineffable now in physics.Paul Merriam - manuscript
    While physicists know how to use quantum mechanics, there is no consensus on what quantum mechanics is a mechanics of. The aim of this paper is to introduce the beginning of what might turn out to be an interpretation of quantum mechanics—one that leaves all calculated probabilities intact. The basic idea is that quantum mechanics describes the objective world, but there must be added to it ineffable variables, one of which is the temporal 'now'. Ineffable variables are not 'hidden (...)
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  30. Bottoms up: The Standard Model Effective Field Theory from a model perspective.Philip Bechtle, Cristin Chall, Martin King, Michael Krämer, Peter Mättig & Michael Stöltzner - 2022 - Studies in History and Philosophy of Science Part A 92:129-143.
    Experiments in particle physics have hitherto failed to produce any significant evidence for the many explicit models of physics beyond the Standard Model (BSM) that had been proposed over the past decades. As a result, physicists have increasingly turned to model-independent strategies as tools in searching for a wide range of possible BSM effects. In this paper, we describe the Standard Model Effective Field Theory (SM-EFT) and analyse it in the context of the philosophical discussions about models, theories, and (...)
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  31. Temporal Fictionalism for a Timeless World.Sam Baron, Kristie Miller & Jonathan Tallant - 2019 - Philosophy and Phenomenological Research 102 (2):281-301.
    Current debate in the metaphysics of time ordinarily assumes that we should be realists about time. Recently, however, a number of physicists and philosophers of physics have proposed that time will play no role in a completed theory of quantum gravity. This paper defends fictionalism about temporal thought, on the supposition that our world is timeless. We argue that, in the face of timeless physical theories, realism about temporal thought is unsustainable: some kind of anti-realism must be adopted. We (...)
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  32. From Quantum Entanglement to Spatiotemporal Distance.Alyssa Ney - 2021 - In Christian Wüthrich, Baptiste Le Bihan & Nick Huggett (eds.), Philosophy Beyond Spacetime. Oxford: Oxford University Press.
    Within the field of quantum gravity, there is an influential research program developing the connection between quantum entanglement and spatiotemporal distance. Quantum information theory gives us highly refined tools for quantifying quantum entanglement such as the entanglement entropy. Through a series of well-confirmed results, it has been shown how these facts about the entanglement entropy of component systems may be connected to facts about spatiotemporal distance. Physicists are seeing these results as yielding promising methods for better understanding the emergence (...)
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  33. The Problem of Certainty in Religion and Science: Two Critically Rational Solutions to the Feynman Dilemma.Shuja Zaidi - 2023 - Journal of Philosophical Investigations 17 (42):352-373.
    The influential physicist Richard Feynman became interested in the relationship between religion and science during a mid-career phase. He proposed that their interface was embroiled in unresolvable difficulties. He felt that science demanded an attitude of uncertainty for its claims, while religion contrarily required certain belief in its core doctrines. Though possessing several non-contradictory dimensions, Feynman felt that the nature of the truth claims of science and religion suffered from insurmountable elemental conflicts. This was by contrast to Karl Popper, the (...)
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  34. A New Argument for the Nomological Interpretation of the Wave Function: The Galilean Group and the Classical Limit of Nonrelativistic Quantum Mechanics.Valia Allori - 2017 - International Studies in the Philosophy of Science (2):177-188.
    In this paper I investigate, within the framework of realistic interpretations of the wave function in nonrelativistic quantum mechanics, the mathematical and physical nature of the wave function. I argue against the view that mathematically the wave function is a two-component scalar field on configuration space. First, I review how this view makes quantum mechanics non- Galilei invariant and yields the wrong classical limit. Moreover, I argue that interpreting the wave function as a ray, in agreement many physicists, Galilei (...)
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  35.  89
    A Commentary on Robin Hendry’s Views on Molecular Structure, Emergence and Chemical Bonding.Eric Scerri - 2023 - In João L. Cordovil, Gil Santos & Davide Vecchi (eds.), New Mechanism Explanation, Emergence and Reduction. Springer. pp. 161 - 177.
    In this article I examine several related views expressed by Robin Hendry concerning molecular structure, emergence and chemical bonding. There is a long-standing problem in the philosophy of chemistry arising from the fact that molecular structure cannot be strictly derived from quantum mechanics. Two or more compounds which share a molecular formula, but which differ with respect to their structures, have identical Hamiltonian operators within the quantum mechanical formalism. As a consequence, the properties of all such isomers yield precisely the (...)
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  36. Reflections on a theory of organisms: holism in biology.Walter M. Elsasser - 1987 - Baltimore, Md: Published for the Johns Hopkins Dept. of Earth and Planetary Sciences by the Johns Hopkins University Press.
    Are living organisms--as Descartes argued--just machines? Or is the nature of life such that it can never be fully explained by mechanistic models? In this thought-provoking and controversial book, eminent geophysicist Walter M. Elsasser argues that the behavior of living organisms cannot be reduced to physico-chemical causality. Suggesting that molecular biology today is at the same point as Newtonian physics on the eve of the quantum revolution, Elsasser lays the foundation for a theoretical biology that points the way toward a (...)
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  37. CRITIQUE OF IMPURE REASON: Horizons of Possibility and Meaning.Steven James Bartlett - 2021 - Salem, USA: Studies in Theory and Behavior.
    PLEASE NOTE: This is the corrected 2nd eBook edition, 2021. ●●●●● _Critique of Impure Reason_ has now also been published in a printed edition. To reduce the otherwise high price of this scholarly, technical book of nearly 900 pages and make it more widely available beyond university libraries to individual readers, the non-profit publisher and the author have agreed to issue the printed edition at cost. ●●●●● The printed edition was released on September 1, 2021 and is now available through (...)
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  38. Lessons from the Void: What Boltzmann Brains Teach.Bradford Saad - forthcoming - Analytic Philosophy.
    Some physical theories predict that almost all brains in the universe are Boltzmann brains, i.e. short-lived disembodied brains that are accidentally assembled as a result of thermodynamic or quantum fluctuations. Physicists and philosophers of physics widely regard this proliferation as unacceptable, and so take its prediction as a basis for rejecting these theories. But the putatively unacceptable consequences of this prediction follow only given certain philosophical assumptions. This paper develops a strategy for shielding physical theorizing from the threat of (...)
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  39. Reality Realism.Sean M. Carroll - manuscript
    In Morality & Mathematics, Justin Clarke-Doane argues that it is hard to imagine being "a realist about, for example, the standard model of particle physics, but not about mathematics." I try to explain how that seems very possible from the perspective of a physicist. What is real is the physical world; mathematics starts from descriptions of the natural world and extrapolates from there, but that extrapolation does not imply any independent reality. -/- Submitted to an Analysis Reviews symposium on Clarke-Doane's (...)
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  40. Anyon, Mobius Strip, Imaginary Computer.Rodney Bartlett - manuscript
    In 1982, MIT physicist Frank Wilczek predicted and named ANYONS, quasiparticles (particle-like formations) that are confined to 2 dimensions. The name might come from Prof. Wilczek's lighthearted comment "anything goes". This article's main goal is to show that anyons could be another name for 1) virtual particles, 2) Mobius strips, and 3) figure-8 Klein bottles. Along the way, we'll see the picture painted by the article confirm that Einstein's dream of gravitational-electromagnetic unity fits in with anyons being Mobius strips. We'll (...)
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  41. Can machines think? The controversy that led to the Turing test.Bernardo Gonçalves - 2023 - AI and Society 38 (6):2499-2509.
    Turing’s much debated test has turned 70 and is still fairly controversial. His 1950 paper is seen as a complex and multilayered text, and key questions about it remain largely unanswered. Why did Turing select learning from experience as the best approach to achieve machine intelligence? Why did he spend several years working with chess playing as a task to illustrate and test for machine intelligence only to trade it out for conversational question-answering in 1950? Why did Turing refer to (...)
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  42.  74
    Return to reason. [REVIEW]Maarten Mentzel - 2002 - Filosofie En Praktijk 23 (4):58-59.
    Physicist and philosopher of science Stephen Toulmin (London 1922 - Los Angeles 2009) published his last book Return to Reason in 2001 (Cambridge, MA). Review of translation in Dutch (2001). Introductory notes on his scholarly book reception in the Netherlands: An Examination of the Place of Reason in Ethics (1950), Wittgenstein's Vienna (1972, with Allan Janik), Cosmopolis. The Hidden Agenda of Modernity (1990). "Terug naar de Rede" contains a farewell to the quest for certainty and "the dreams of rationalism" (Isaac (...)
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  43. Making Sense of Bell’s Theorem and Quantum Nonlocality.Stephen Boughn - 2017 - Foundations of Physics 47 (5):640-657.
    Bell’s theorem has fascinated physicists and philosophers since his 1964 paper, which was written in response to the 1935 paper of Einstein, Podolsky, and Rosen. Bell’s theorem and its many extensions have led to the claim that quantum mechanics and by inference nature herself are nonlocal in the sense that a measurement on a system by an observer at one location has an immediate effect on a distant entangled system. Einstein was repulsed by such “spooky action at a distance” (...)
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  44. Logic, Philosophy and Physics: A Critical Commentary on the Dilemma of Categories.Abhishek Majhi - 2022 - Axiomathes 32 (6):1415-1431.
    I provide a critical commentary regarding the attitude of the logician and the philosopher towards the physicist and physics. The commentary is intended to showcase how a general change in attitude towards making scientific inquiries can be beneficial for science as a whole. However, such a change can come at the cost of looking beyond the categories of the disciplines of logic, philosophy and physics. It is through self-inquiry that such a change is possible, along with the realization of the (...)
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  45. The Genome as the Biological Unconscious – and the Unconscious as the Psychic 'Genome': A Psychoanalytical Rereading of Molecular Genetics.Hub Zwart - 2013 - Cosmos and History 9 (2):198-222.
    1900 was a remarkable year for science. Several ground-breaking events took place, in physics, biology and psychology. Planck introduced the quantum concept, the work of Mendel was rediscovered, and Sigmund Freud published The Interpretation of Dreams . These events heralded the emergence of completely new areas of inquiry, all of which greatly affected the intellectual landscape of the 20 th century, namely quantum physics, genetics and psychoanalysis. What do these developments have in common? Can we discern a family likeness, a (...)
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  46. Naturalness and the Forward-Looking Justification of Scientific Principles.Enno Fischer - 2023 - Philosophy of Science 90 (5):1050 - 1059.
    It has been suggested that particle physics has reached the "dawn of the post-naturalness era." I provide an explanation of the current shift in particle physicists' attitude towards naturalness. I argue that the naturalness principle was perceived to be supported by the theories it has inspired. The potential coherence between major beyond the Standard Model (BSM) proposals and the naturalness principle led to an increasing degree of credibility of the principle among particle physicists. The absence of new physics (...)
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  47. A Logico-Linguistic Inquiry into the Foundations of Physics: Part 1.Abhishek Majhi - 2022 - Axiomathes (NA):153-198.
    Physical dimensions like “mass”, “length”, “charge”, represented by the symbols [M], [L], [Q], are not numbers, but used as numbers to perform dimensional analysis in particular, and to write the equations of physics in general, by the physicist. The law of excluded middle falls short of explaining the contradictory meanings of the same symbols. The statements like “m tends to 0”, “r tends to 0”, “q tends to 0”, used by the physicist, are inconsistent on dimensional grounds because “m”, “r”, (...)
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  48. Acts chapter 29: Art and Science and Theology in Dialogue.Victor Christianto & Florentin Smarandache - 2024
    For long time, especially in the West, there is old paradigm that is strong separation between science and theology/religion matters. Especially, such a diverging path started from Galileo persecution, and also other patterns where religious authority seem to hold the last word on scientific issues. Other area of this World, seems to not hold such a diverging path, for instance it can be read in the works of physicist turned to religious philosopher, for instance Pavel Florensky and Nesteruk. That is (...)
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  49. Re-reading Wilczek’s remark on “Lost in Math”: The perils of postempirical science and their resolution.Victor Christianto & Florentin Smarandache - manuscript
    Sabine Hossenfelder’s recent book “Lost in Math” has attracted numerous responses, including by notable physicists such as Frank Wilczek. In this article we focus on Wilczek’s remark on that book, in particular on the perils of postempirical science. We also discuss shortly multiverse hypothesis from philosophical perspective. In last section, we offer a resolution from the perspective of Neutrosophic Logic on this problem of classical tension between mathematics and experience approach to physics, which seems to cause the stagnation of (...)
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  50. Achievements and fallacies in Hume's account of infinite divisibility.James Franklin - 1994 - Hume Studies 20 (1):85-101.
    Throughout history, almost all mathematicians, physicists and philosophers have been of the opinion that space and time are infinitely divisible. That is, it is usually believed that space and time do not consist of atoms, but that any piece of space and time of non-zero size, however small, can itself be divided into still smaller parts. This assumption is included in geometry, as in Euclid, and also in the Euclidean and non- Euclidean geometries used in modern physics. Of the (...)
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