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  1. The Theories Of Relativity And Einstein's Philosophical Turn.Makoto Katsumori - 1991 - Studies in History and Philosophy of Science Part A 23 (4):557-592.
  • 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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  • Why did Einstein's programme supersede lorentz's? (II).Elie Zahar - 1973 - British Journal for the Philosophy of Science 24 (3):223-262.
  • Second thoughts about Machian positivism: A reply to Feyerabend.Elie Zahar - 1981 - British Journal for the Philosophy of Science 32 (3):267-276.
  • Einstein, Meyerson and the role of mathematics in physical discovery.Elie Zahar - 1980 - British Journal for the Philosophy of Science 31 (1):1-43.
  • Weber's Sociology and the Exact Sciences: The Common Characteristics of Both Epistemologies.Katsumi Yasumura - 1988 - Annals of the Japan Association for Philosophy of Science 7 (3):131-146.
  • Does God Have the Moral Standing to Blame?Patrick Todd - 2018 - Faith and Philosophy 35 (1):33-55.
    In this paper, I introduce a problem to the philosophy of religion – the problem of divine moral standing – and explain how this problem is distinct from (albeit related to) the more familiar problem of evil (with which it is often conflated). In short, the problem is this: in virtue of how God would be (or, on some given conception, is) “involved in” our actions, how is it that God has the moral standing to blame us for performing those (...)
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  • The projection postulate: A new perspective.Paul Teller - 1984 - Philosophy of Science 51 (3):369-395.
    Previous work has shown that the problem of measurement in quantum mechanics is not correctly seen as one of understanding some allegedly univocal process of measurement in nature which corresponds to the projection postulate. The present paper introduces a new perspective by showing that how we are to understand the nature of the change of quantum mechanical state on measurement depends very sensitively on the interpretation of the state function, and by showing how attention to this dependence can greatly sharpen (...)
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  • Michael Ruse: Science and Spiritutality: Making Room for Faith in the Age of Science.Peter Slezak - 2012 - Science & Education 21 (3):403-413.
  • Einstein, Dawkins, and Wonder at the Intelligibility of the World.Patrick Sherry - 2019 - Heythrop Journal 60 (1):5-15.
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  • Anthropology, Polanyi, and afropentecostal ritual: A scientific and theological epistemology of participation.Craig Scandrett-Leatherman - 2008 - Zygon 43 (4):909-923.
    The 1904 World's Fair in St. Louis sponsored both an International Congress of Arts and Sciences aimed at unity of knowledge and an anthropology exhibit of diverse peoples. Jointly these represented a quest for unifying knowledge in a diverse world that was fractured by isolated specializations and segregated peoples. In historical perspective, the Congress's quest for knowledge is overshadowed by Ota Benga who was part of the anthropology exhibit. The 1904 World's Fair can be viewed as a Euro-American ritual, a (...)
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  • Technology and its environment.Professor Howard Rosenbrock - 1993 - AI and Society 7 (2):117-126.
    If one interprets the ‘ecology of technology’ as the study of technology in relation to its environment, there are two important levels at which this study can be made. It is possible to consider the different environments in Europe, Japan and the USA, and look for the different technological influences which accompany them. At a more general level, one can look at those factors which are common to all three environments, and which are associated with generic similarities in the technology (...)
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  • Outline of a Theory of Scientific Aesthetics.Gustavo E. Romero - 2018 - Foundations of Science 23 (4):795-807.
    I offer a theory of art that is based on science. I maintain that, as any other human activity, art can be studied with the tools of science. This does not mean that art is scientific, but aesthetics, the theory of art, can be formulated in accord with our scientific knowledge. I present elucidations of the concepts of aesthetic experience, art, work of art, artistic movement, and I discuss the ontological status of artworks from the point of view of scientific (...)
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  • Lame Science? Blind Religion?Holmes Rolston - 2019 - Zygon 54 (2):351-353.
    In Consecrating Science, Lisa Sideris argues that an anthropocentric and science‐based cosmology encourages human arrogance and diminishes a sense of wonder in human experience immersed in the natural world, as found in diverse cultural and religious traditions. I agree with her that science elevated to a commanding worldview, scientism, is a common and contemporary mistake, to be deplored, a lame science. But I further argue that science has introduced us to the marvels of deep nature and vastly increased our human (...)
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  • The religion of a scientist: Explorations into reality (religio philosophi naturalis).Arthur Peacocke - 1994 - Zygon 29 (4):639-659.
    Sir Thomas Browne's reflection on the synthesis between his Christian religion and his practice as a medical doctor, made over three centuries ago, leads into reflections on the present relation between religion and science in the personal experience of the writer. An account is given of how the actual practice of scientific investigation led the author to theistic inferences and how the study of DNA provoked questions concerning reductionism and emergence. This evoked the need for a map of knowledge, and (...)
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  • When champions meet: Rethinking the Bohr–Einstein debate.Nicolaas P. Landsman - 2005 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 37 (1):212-242.
    Einstein's philosophy of physics (as clarified by Fine, Howard, and Held) was predicated on his Trennungsprinzip, a combination of separability and locality, without which he believed objectification, and thereby "physical thought" and "physical laws", to be impossible. Bohr's philosophy (as elucidated by Hooker, Scheibe, Folse, Howard, Held, and others), on the other hand, was grounded in a seemingly different doctrine about the possibility of objective knowledge, namely the necessity of classical concepts. In fact, it follows from Raggio's Theorem in algebraic (...)
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  • Exploring the Human Cognitive Capacity in Understanding Systems: A Grey Systems Theory Perspective.Ehsan Javanmardi & Sifeng Liu - 2020 - Foundations of Science 25 (3):803-825.
    The main purpose of this study is to probe into the human capacity of understanding systems and defects in human knowledge of the world. The study addresses the greyness levels and systems levels and explains why the world cannot be perceived as a purely white or black structure. It also clarifies why human knowledge of systems always remains grey. The investigation relies on logical and deductive reasoning and uses the theoretical foundations of systems thinking and Boulding’s systems hierarchy. The most (...)
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  • A relativistic eschatology: Time, eternity, and eschatology in light of the physics of relativity.Antje Jackelén - 2006 - Zygon 41 (4):955-974.
  • Ethics and intellectual structures.Howard Rosenbrock - 1995 - AI and Society 9 (1):18-28.
    In the paper, three propositions are put forward. First, that intellectual structures of wide scope commonly lead to conclusions which are ethically unacceptable; secondly that the ethically unacceptable consequences of science arise from one particular presupposition which it adopts, namely that of causality; thirdly, that causality is no essential part of science.
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  • Einstein’s theory of theories and types of theoretical explanation.Francisco Flores - 1999 - International Studies in the Philosophy of Science 13 (2):123 – 134.
    In this paper I draw on Einstein's distinction between “principle” and “constructive” theories to isolate two levels of physical theory that can be found in both classical and (special) relativistic physics. I then argue that when we focus on theoretical explanations in physics, i.e. explanations of physical laws, the two leading views on explanation, Salmon's “bottom-up” view and Kitcher's “top-down” view, accurately describe theoretical explanations for a given level of theory. I arrive at this conclusion through an analysis of explanations (...)
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  • Einstein, his theories, and his aesthetic considerations.Gideon Engler - 2005 - International Studies in the Philosophy of Science 19 (1):21 – 30.
    This article deals with the question whether aesthetic considerations affected Einstein in formulating both his theories of relativity. The opinions of philosophers and historians alike are divided on this matter. Thus, Gerald Holton supports the view that Einstein employed aesthetic considerations in formulating his theory of special relativity whereas Jim Shelton opposes it, one of his reasons being that Einstein did not mention such considerations. The other theory, namely, that of general relativity, is discussed by John D. Norton. He asserts (...)
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  • Einstein and the most beautiful theories in physics.Gideon Engler - 2002 - International Studies in the Philosophy of Science 16 (1):27 – 37.
    Einstein's theories of special and general relativity are unanimously praised by scientists for their extraordinary beauty to the extent that some consider the latter to be the most beautiful theory in physics. The grounds for these assertions are assessed here and it is concluded that the beauty of Einstein's theories can be attributed to two of their aspects. The first is that they incorporate all possible ingredients that constitute the beauty of theories: simplicity, symmetry, invariance, unification, etc. The second concerns (...)
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  • Spirit, method, and content in science and religion: The theological perspective of a geneticist.Lindon Eaves - 1989 - Zygon 24 (2):185-216.
    There are three ways in which bridges may be built between science and theology: spirituality, methodology, and content. Spirituality is the power which drives each to address reality and the expectations with which each approaches the pursuit of truth. The methodology of science is summarized in terms of three activities: taxonomy; the hypothetico‐deductive cycle; derivative technology. The content of science, especially with respect to the phenomena of givenness, connectedness and openness in the life sciences, is correlated with theological constructs. Attention (...)
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  • The Divine Side of Enterprise.Deepak Danak - 2010 - Journal of Human Values 16 (1):71-86.
    This article analyzes the past, the present, and the future of business institution in society in terms of its management approaches by using the framework of human evolution, and discovers a trend that explains three paradigms in business management that have been witnessed so far. Extending the trend, it projects another two paradigm shifts to take place in future, and establishes that the business management practice is going to evolve further where it will turn from its present status of ‘result-oriented (...)
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  • Scientific Conjectures and the Growth of Knowledge.Sanjit Chakraborty - 2021 - Journal of the Indian Council of Philosophical Research 38 (1):83-101.
    A collective understanding that traces a debate between ‘what is science?’ and ‘what is a science about?’ has an extraction to the notion of scientific knowledge. The debate undertakes the pursuit of science that hardly extravagance the dogma of pseudo-science. Scientific conjectures invoke science as an intellectual activity poured by experiences and repetition of the objects that look independent of any idealist views (believes in the consensus of mind-dependence reality). The realistic machinery employs in an empiricist exposition of the objective (...)
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  • Scientific Conjectures and the Growth of Knowledge.Sanjit Chakraborty - 2021 - Journal of the Indian Council of Philosophical Research 38 (1):83-101.
    A collective understanding that traces a debate between 'what is science?’ and ‘what is a science about?’ has an extraction to the notion of scientific knowledge. The debate undertakes the pursuit of science that hardly extravagance the dogma of pseudo-science. Scientific conjectures invoke science as an intellectual activity poured by experiences and repetition of the objects that look independent of any idealist views (believes in the consensus of mind-dependence reality). The realistic machinery employs in an empiricist exposition of the objective (...)
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  • A functional analysis of scientific theories.Harold I. Brown - 1979 - Zeitschrift Für Allgemeine Wissenschaftstheorie 10 (1):119-140.
    Scientific theories are analyzed in terms of the role that they play in science rather than in terms of their logical structure. It is maintained that theories: provide descriptions of the fundamental features of their domains; on the basis of 1, explain non-fundamental features of their domains; provide a guide for further research in their domains. Any set of propositions that carries out these functions with respect to some domain counts as a theory. This view of theories is developed and (...)
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  • Philosophy as Part of Internal History of Science.John T. Blackmore - 1983 - Philosophy of the Social Sciences 13 (1):17-46.
    The primary purpose of the paper is to try to prove that it is impossible to write or understand history without making epistemological and ontological assumptions, In particular assumptions about whether physical objects and processes are within or beyond the limits of what can be made empirical or conscious.
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  • Discovering relativity beliefs: Towards a socio-cognitive model for Einstein's relativity theory formation.Andrea Cerroni - 2002 - Mind and Society 3 (1):93-109.
    The research on which the present paper makes a point in aimed at designing a cognitive model of Albert Einstein's discovery that is based on fundamental Einstein's publications and placed, ideally, at a meso-level, between macro-historical and micro-cognitive reconstructions (e.g. protocol analysis). As in a cognitive-historical analysis, we will trace some discovery heuristics in the construction of representations, that are on a continuum with those we employ in ordinary problem solving. Firstly, some theory-specific, reflexive heuristics—named orientative heuristics—are traced: inner perfection, (...)
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  • Honesty Still Is the Best Policy.Joseph Agassi - 2014 - Philosophy of the Social Sciences 44 (5):673-687.
    Fuller describes the place of intellectuals in the modern world—as researchers, teachers, academics, and citizens. Their job is that of developing and promoting ideas. He explains their failure to perform well and offers advice: say what you think you should say, not necessarily what you think. The advice is unsuitable; it is aimed at advisers and expert witnesses, not at intellectuals. Also, his analysis invites proposals for social reforms aimed at lowering traditional expectations of intellectuals and toward presenting them with (...)
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  • Einstein’s Philosophy Politely Shelved.Joseph Agassi - 2015 - Philosophy of the Social Sciences 45 (4-5):515-527.
    Einstein considered fallibilist methodology obvious and metaphysics the challenging heuristic of physics. This philosophy is a minority view in academic philosophy. Most commentators on Einstein reject it and either refuse to ascribe it to him or declare it an impediment to his researches, his own opinion to the contrary notwithstanding.
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  • Mεtascience: Scientific General Discourse - No. 1 - Mario Bunge Thinker of Materiality.François Maurice - 2020 - Mεtascience: Scientific General Discourse 1:1-164.
    [This is the full issue of the first issue of Mɛtascience] -/- This inaugural issue of the journal Mεtascience is also a special issue since it pays tribute to Mario Bunge (1919-2020) to high light his contribution to knowledge and our filiation with his thought. Mario Bunge's project is part of the humanist and scientific tradition of the Enlightenment. At the end of his intellectual journey, he wrote more than 150 books and 540 articles or chapters, including translations into several (...)
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  • Physics in Catholicism in Encyclopedia of Sciences and Religions, Vol 3. Anne Runehov and Lluis Oviedo (Eds.) (pp. 1718-1729).Philippe Gagnon - 2013 - In Anne L. C. Runehov & Luis Oviedo (eds.), Encyclopedia of Sciences and Religions, Vol 3. Dordrecht, Pays-Bas: Springer. pp. 1718-1729.
    Outline: The reality of Catholicism; The question of the development of science; Historical outlook at some transitional moments; When dogma meets science; Contemporary physics and the worldview of Catholicism; Awaiting a 'Grand Narrative' and the final vision of harmony.
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  • The equivalence of mass and energy.Francisco Flores - forthcoming - Stanford Encyclopedia of Philosophy.
  • Gandhi's Satya: Truth entails peace.Venkata Rayudu Posina - 2022 - In Anshuman Behera & Shailesh Nayak (eds.), Gandhi in the Twenty First Century. Singapore: pp. 189-198.
    What is Gandhi’s Satya? How does truth entail peace? Satya or truth, for Gandhi, is experiential. The experiential truth of Gandhi does not exclude epistemological, metaphysical, or moral facets of truth, but is an unequivocal acknowledgement of the subjective basis of the pursuit of objectivity. In admitting my truth, your truth, our truth, their truth, etc., Gandhi brought into clear focus the reality of I and we—the subjects (or viewpoints) of subjective experiences (views). The totality of these subjective viewpoints, along (...)
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  • Educating for good judgment.Thomas S. Yos - unknown
    What should be the primary aims of education? How might these aims be realized? These are foundational questions which Plato raised long ago in his Republic. The first of these questions is a normative, and profoundly philosophical, one which provides guidance to the whole endeavor of education. The second of these questions is a pedagogical one which informs educators as to how their work can be best conducted. In this work I endeavor to answer these interlocking educational questions. I follow (...)
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  • Métascience: Pour un discours général scientifique.François Maurice - 2020 - Mεtascience: Discours Général Scientifique 1:31-77.
    L’humain produit des discours sur le monde : mythologies, religions, mysticismes, philosophies, science. La majorité de ses discours sont de nature transcendante. À la suite d’un clarification conceptuelle fondée sur les notions de réflexion et de discours général, la philosophie apparaît comme un dis- cours général transcendant parmi d’autres ; d’où l’échec de celle-ci à rendre compte du monde et de la science ; d’où la nécessité de disposer d’un discours général non transcendant, un discours général proprement scientifique, une métascience. (...)
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  • On the kinds of problems tackled by science, technology, and professions. Building foundations of science policy.Luis Marone - 2020 - Mεtascience: Scientific General Discourse 1:79-95.
    Science, technology, and professions form a system with strong interactions. Yet, these activities attack different kinds of problems which require different kinds of solutions. The problems that trigger scientific and technological research remain insufficiently solved or unsolved, therefore their possible solutions must be invented (i. e. they are partially or totally original) and, consequently, they should be tested against reality by researchers before considering them as true or useful. On the contrary, the problems that trigger professional inquiry are already solved, (...)
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  • Catholic Education and the Study of Science: The Mysticism of Scientific Pursuit.Elisabetta Canetta - 2022 - Religions 13:1-12.
  • Fundamental physical theories: mathematical structures grounded on a primitive ontology.Valia Allori - 2007 - Dissertation, Rutgers
    In my dissertation I analyze the structure of fundamental physical theories. I start with an analysis of what an adequate primitive ontology is, discussing the measurement problem in quantum mechanics and theirs solutions. It is commonly said that these theories have little in common. I argue instead that the moral of the measurement problem is that the wave function cannot represent physical objects and a common structure between these solutions can be recognized: each of them is about a clear three-dimensional (...)
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