Results for 'exact science'

958 found
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  1. A Fundamental Duality in the Exact Sciences: The Application to Quantum Mechanics.David Ellerman - 2024 - Foundations 4 (2):175-204.
    There is a fundamental subsets–partitions duality that runs through the exact sciences. In more concrete terms, it is the duality between elements of a subset and the distinctions of a partition. In more abstract terms, it is the reverse-the-arrows of category theory that provides a major architectonic of mathematics. The paper first develops the duality between the Boolean logic of subsets and the logic of partitions. Then, probability theory and information theory (as based on logical entropy) are shown to (...)
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  2. Universals and the methodenstreit: a re-examination of Carl Menger's conception of economics as an exact science.Uskali Mäki - 1997 - Studies in History and Philosophy of Science Part A 28 (3):475-495.
    In the latter half of the 19th century, economic thought in the Germanspeaking world was dominated, both intellectually and academically, by the so-called historical school, from Wilhelm Roscher to Gustav Schmoller and others. In 1871, the Austrian Carl Menger published his Grun&tze der Volkswirtschaftslehre (Menger, 1976 (1871)), customarily referred to as one of the three simultaneous discoveries of marginalist economics-the other two marginalist ‘revolutionaries’ being Jevons in England and Walras in France. Twelve years later, in 1883, Menger published a major (...)
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  3. (1 other version)Wie genau sind die exacten Wissenschaften? (How exact are the exact sciences?), part II,.Mihai Nadin - 1980 - Zeitschrift Für Das Interdisziplinäre Gespräch 36 (2).
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  4. Nitpicking Newton (Review of: Pierre Simon Laplace: A Life in Exact Science). [REVIEW]Ray Scott Percival - 1998 - New Scientist (2123).
    ONE of the most celebrated mathematical physicists, Pierre-Simon Laplace is often remembered as the mathematician who showed that despite appearances, the Solar System does conform to Newton’s theories. Together with distinguished scholars Robert Fox and Ivor Grattan-Guinness, Charles Gillispie gives us a new perspective, showing that Laplace did not merely vindicate Newton’s system, but had a uniquely creative and independent mind.
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  5. Exact and Approximate Arithmetic in an Amazonian Indigene Group.Pierre Pica, Cathy Lemer, Véronique Izard & Stanislas Dehaene - 2004 - Science 306 (5695):499-503.
    Is calculation possible without language? Or is the human ability for arithmetic dependent on the language faculty? To clarify the relation between language and arithmetic, we studied numerical cognition in speakers of Mundurukú, an Amazonian language with a very small lexicon of number words. Although the Mundurukú lack words for numbers beyond 5, they are able to compare and add large approximate numbers that are far beyond their naming range. However, they fail in exact arithmetic with numbers larger than (...)
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  6. Karl Sigmund: Exact Thinking in Demented Times. The Vienna Circle and the Epic Quest for the Foundations of Science[REVIEW]Thomas Mormann - 2018 - Isis 109 (4):865 - 866.
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  7. What type of Type I error? Contrasting the Neyman–Pearson and Fisherian approaches in the context of exact and direct replications.Mark Rubin - 2021 - Synthese 198 (6):5809–5834.
    The replication crisis has caused researchers to distinguish between exact replications, which duplicate all aspects of a study that could potentially affect the results, and direct replications, which duplicate only those aspects of the study that are thought to be theoretically essential to reproduce the original effect. The replication crisis has also prompted researchers to think more carefully about the possibility of making Type I errors when rejecting null hypotheses. In this context, the present article considers the utility of (...)
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  8. The exact (up to infinitesimals) infinite perimeter of the Koch snowflake and its finite area.Yaroslav Sergeyev - 2016 - Communications in Nonlinear Science and Numerical Simulation 31 (1-3):21–29.
    The Koch snowflake is one of the first fractals that were mathematically described. It is interesting because it has an infinite perimeter in the limit but its limit area is finite. In this paper, a recently proposed computational methodology allowing one to execute numerical computations with infinities and infinitesimals is applied to study the Koch snowflake at infinity. Numerical computations with actual infinite and infinitesimal numbers can be executed on the Infinity Computer being a new supercomputer patented in USA and (...)
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  9. Science and Ethics: Tracing parallels and contrasts between Science, Relativism and Utilitarianism.Louis Caruana - 2006 - Revista Portuguesa de Filosofia 62 (1):119-136.
    In its first section, dedicated to the topic science and relativism, the article argues against those who hold that science is absolutist while ethics is relativist. The point made is that the two disciplines are not all that different. There is an element of objectivity and an element of relativity in both. The article insists that there are two plausible ways in which these elements may be appreciated in both disciplines. The first way involves an analysis of precedents; (...)
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  10. Divide et Impera! William James’s Pragmatist Tradition in the Philosophy of Science.Alexander Klein - 2008 - Philosophical Topics 36 (1):129-166.
    ABSTRACT. May scientists rely on substantive, a priori presuppositions? Quinean naturalists say "no," but Michael Friedman and others claim that such a view cannot be squared with the actual history of science. To make his case, Friedman offers Newton's universal law of gravitation and Einstein's theory of relativity as examples of admired theories that both employ presuppositions (usually of a mathematical nature), presuppositions that do not face empirical evidence directly. In fact, Friedman claims that the use of such presuppositions (...)
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  11. Religion and Science unification.Spyridon Kakos - 2017 - International Journal of Theology, Philosophy and Science 1 (1):78-95.
    Speaking for God has been part of religion for many years. However, science has come in the past few years to question that role or even our very ability to speak about God in general. My goal is to show that dogmatism, under any form, is wrong. And even though dogmatism had for a long time been associated with ill-intentioned religion, nowadays science has replaced religion in the throne of doctrinaire thinking. The point of the paper is to (...)
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  12. Religion as the single foundation of Science.Spyridon Kakos - 2020 - MCDSARE 4.
    For centuries, science was considered as something radically different from religion. Yet, the foundations of true science are deeply religious in nature. This paper seeks to show how religion is the only foundation needed for the formulation of scientific theories, since it provides the core principles on which the building of exact sciences is based upon. Our need to understand the cosmos and our faith in us being able to do so, are the main prerequisites for conducting (...)
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  13. The Ant Trap: Rebuilding the Foundations of the Social Sciences.Brian Epstein - 2015 - New York, NY: Oxford University Press.
    We live in a world of crowds and corporations, artworks and artifacts, legislatures and languages, money and markets. These are all social objects — they are made, at least in part, by people and by communities. But what exactly are these things? How are they made, and what is the role of people in making them? In The Ant Trap, Brian Epstein rewrites our understanding of the nature of the social world and the foundations of the social sciences. Epstein explains (...)
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  14. The Science of Meaning: Essays on the Metatheory of Natural Language Semantics.Derek Ball & Brian Rabern (eds.) - 2018 - Oxford: Oxford University Press.
    By creating certain marks on paper, or by making certain sounds-breathing past a moving tongue-or by articulation of hands and bodies, language users can give expression to their mental lives. With language we command, assert, query, emote, insult, and inspire. Language has meaning. This fact can be quite mystifying, yet a science of linguistic meaning-semantics-has emerged at the intersection of a variety of disciplines: philosophy, linguistics, computer science, and psychology. Semantics is the study of meaning. But what exactly (...)
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  15. The Biological Principle of Natural Sciences and the Logos of Life of Natural Philosophy: A Comparison and the Perspectives of Unifying the Science and Philosophy of Life.Attila Grandpierre - 2011 - Analecta Husserliana 110:711-727.
    Acknowledging that Nature is one unified whole, we expect that physics and biology are intimately related. Keeping in mind that physics became an exact science with which we are already familiar with, while, apparently, we do not have at present a similar knowledge about biology, we consider how can we make useful the clarity of physics to shed light to biology. The next question will be what are the most basic categories of physics and biology. If we do (...)
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  16. In Defence of Linguistics as an Empirical Science in Light of Mario Bunge’s Defence of the Scientific Treatment of Biology.Dorota Zielińska - 2024 - Mεtascience: Scientific General Discourse 3:205-251.
    Although few linguists currently embrace the empirical paradigm, there are increasing calls for the development of tools for studying language that resemble those in exact sciences. This trend can be observed even in top mainstream linguistic journals, such as the Journal of Pragmatics, as exemplified by Xiang (2017). Today, however, linguists who adapt the methodologies from more advanced sciences face isolation from the mainstream linguistic community. This is because the majority of linguists in philological and philosophical departments remain convinced (...)
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  17. Universal Science of Mind: Can Complexity-Based Artificial Intelligence Save the World in Crisis?Andrei P. Kirilyuk - manuscript
    While practical efforts in the field of artificial intelligence grow exponentially, the truly scientific and mathematically exact understanding of the underlying phenomena of intelligence and consciousness is still missing in the conventional science framework. The inevitably dominating empirical, trial-and-error approach has vanishing efficiency for those extremely complicated phenomena, ending up in fundamentally limited imitations of intelligent behaviour. We provide the first-principle analysis of unreduced many-body interaction process in the brain revealing its qualitatively new features, which give rise to (...)
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  18. No, Science Won't Solve the Great Problems of Philosophy.Julian Friedland - 2020 - Medium.
    A popular positivistic line of thinking seems to be cropping up again, declaring that the sciences are on the verge of a paradigmatic shift. One that will merge science and philosophy to finally answer all the great big questions once and for all. Questions such as What is life? What is consciousness? What makes individuals who they are? Why does our universe seem fine-tuned for our existence? How did it all begin? While such questions are undoubtedly important, the truth (...)
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  19. Is Science Neurotic?Nicholas Maxwell - 2004 - London: World Scientific.
    In this book I show that science suffers from a damaging but rarely noticed methodological disease, which I call rationalistic neurosis. It is not just the natural sciences which suffer from this condition. The contagion has spread to the social sciences, to philosophy, to the humanities more generally, and to education. The whole academic enterprise, indeed, suffers from versions of the disease. It has extraordinarily damaging long-term consequences. For it has the effect of preventing us from developing traditions and (...)
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  20. Science itself teaches”. A fresh look at quine’s naturalistic metaphilosophy.Geert Keil - 2003 - Grazer Philosophische Studien 66 (1):253-280.
    Quine famously holds that "philosophy is continuous with natural science". In order to find out what exactly the point of this claim is, I take up one of his preferred phrases and trace it through his writings, i.e., the phrase "Science itself teaches that …". Unlike Wittgenstein, Quine did not take much interest in determining what might be distinctive of philosophical investigations, or of the philosophical part of scientific investigations. I find this indifference regrettable, and I take a (...)
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  21. History and Philosophy of Science History.David Marshall Miller - 2011 - In Seymour Mauskopf & Tad Schmaltz (eds.), Integrating history and philosophy of science: problems and prospects. New York: Springer Verlag. pp. 29-48.
    Science lies at the intersection of ideas and society, at the heart of the modern human experience. The study of past science should therefore be central to our humanistic attempt to know ourselves. Nevertheless, past science is not studied as an integral whole, but from two very different and divergent perspectives: the intellectual history of science, which focuses on the development of ideas and arguments, and the social history of science, which focuses on the development (...)
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  22. Philosophy is the unborn child of science: looking for a universal common language.Yuriy Rotenfeld - manuscript
    The article "Philosophy is the unborn child of science: in search of a universal commonly used language" explores the problem of creating a universal philosophical language that includes not only the language of classification concepts of natural language that define people's reasoning thinking, but also the language of comparative concepts, which is the basis their mind and wisdom. At the same time, the author divides comparative concepts into two parts, the first of which is determined by particular concepts – (...)
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  23. The Epistemology of Geometry I: the Problem of Exactness.Anne Newstead & Franklin James - 2010 - Proceedings of the Australasian Society for Cognitive Science 2009.
    We show how an epistemology informed by cognitive science promises to shed light on an ancient problem in the philosophy of mathematics: the problem of exactness. The problem of exactness arises because geometrical knowledge is thought to concern perfect geometrical forms, whereas the embodiment of such forms in the natural world may be imperfect. There thus arises an apparent mismatch between mathematical concepts and physical reality. We propose that the problem can be solved by emphasizing the ways in which (...)
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  24. Model Transfer in Science.Catherine Herfeld - 2024 - In Tarja Knuuttila, Natalia Carrillo & Rami Koskinen (eds.), The Routledge Handbook of Philosophy of Scientific Modeling. New York, NY: Routledge.
    A conspicuous feature of contemporary modelling practices is the use of the same mathematical forms and modelling methods across different scientific domains. This model transfer raises many philosophical questions concerning, for example, the exact object of transfer, the relationship between the model and the target domain, the specific challenges such transfer confronts, and the ways in which model transfer relates to scientific progress. While the interest in studying model transfer has increased among philosophers of science in recent years, (...)
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  25. Disagreement and Consensus in Science.Finnur Dellsén - 2024 - In Maria Baghramian, J. Adam Carter & Rach Cosker-Rowland (eds.), Routledge Handbook of Philosophy of Disagreement. New York, NY: Routledge.
    Consensus and disagreement play important roles in the practice, development, and dissemination of science. This raises a host of important philosophical questions. Some of these issues are conceptual: When, exactly, does a scientific agreement count as a consensus? And in what sense, if any, is disagreement the opposite of consensus? Other questions concern the role of consensus and disagreement in the development of science: For example, is consensus on central methodological issues and assumptions necessary for scientific work to (...)
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  26. Some Reflections on Cognitive Science, Doubt, and Religious Belief.Joshua C. Thurow - 2014 - In Justin Barrett Roger Trigg (ed.), The Root of Religion. Ashgate.
    Religious belief and behavior raises the following two questions: (Q1) Does God, or any other being or state that is integral to various religious traditions, exist? (Q2) Why do humans have religious beliefs and engage in religious behavior? How one answers (Q2) can affect how reasonable individuals can be in accepting a particular answer to (Q1). My aim in this chapter is to carefully distinguish the various ways in which an answer to Q2 might affect the rationality of believing in (...)
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  27. “We Don’t Know Exactly How They Work”: Making Sense of Technophobia in 1973 Westworld, Futureworld, and Beyond Westworld.Stefano Bigliardi - 2019 - Journal of Science Fiction and Philosophy 2:1-30.
    This article scrutinizes Michael Crichton’s movie Westworld (1973), its sequel Futureworld (1976), and the spin-off series Beyond Westworld (1980), as well as the critical literature that deals with them. I examine whether Crichton’s movie, its sequel, and the 1980s series contain and convey a consistent technophobic message according to the definition of “technophobia” advanced in Daniel Dinello’s 2005 monograph. I advance a proposal to develop further the concept of technophobia in order to offer a more satisfactory and unified interpretation of (...)
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  28. Mysticism and Science: Two Products of the Human Imagination.Jack T. Trevors & Milton H. Saier - 2012 - Dialogues in Philosophy, Mental and Neuro Sciences 5 (1):25-28.
    We examine that both science and religion were original products of the human imagination. However, the approaches taken to develop these two explanations of life, were entirely different. The precepts of evolution are well established through the scientific method. This approach has led to the accumulation of immense amounts of evidence for biological evolution, and much scientific progress has been made to understand the pathways taken for the appearance of organisms and their macromolecular constituents. The existence of spiritual beings (...)
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  29. Symmetry and Reformulation: On Intellectual Progress in Science and Mathematics.Josh Hunt - 2022 - Dissertation, University of Michigan
    Science and mathematics continually change in their tools, methods, and concepts. Many of these changes are not just modifications but progress---steps to be admired. But what constitutes progress? This dissertation addresses one central source of intellectual advancement in both disciplines: reformulating a problem-solving plan into a new, logically compatible one. For short, I call these cases of compatible problem-solving plans "reformulations." Two aspects of reformulations are puzzling. First, reformulating is often unnecessary. Given that we could already solve a problem (...)
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  30. The Limits of Reductionism in the Life Sciences.Marie I. Kaiser - 2011 - History and Philosophy of the Life Sciences 33 (4):453-476.
    In the contemporary life sciences more and more researchers emphasize the “limits of reductionism” (e.g. Ahn et al. 2006a, 709; Mazzocchi 2008, 10) or they call for a move “beyond reductionism” (Gallagher/Appenzeller 1999, 79). However, it is far from clear what exactly they argue for and what the envisioned limits of reductionism are. In this paper I claim that the current discussions about reductionism in the life sciences, which focus on methodological and explanatory issues, leave the concepts of a reductive (...)
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  31. Neurophilosophy: A Bridge Between Science and Contemporary Philosophy.Andrey Astafiev - manuscript
    Abstract Scientific discoveries must have more impact on philosophy (Bechtel, 2001. Part. I.I.). That is the thesis of the American professor of philosophy William Bechtel. Applications of the insights from the neurosciences could perhaps lead to a breakthrough in solving metaphysical and religious questions. Philosophers must assume the task of building bridges between the exact (and cognitive) sciences and contemporary philosophy (Bechtel, 2002. 49). This paper is a critical analysis of the promises of a relatively new discipline: Neurophilosophy.
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  32. How Our Biology Constrains Our Science.Michael Vlerick - 2017 - Kairos 18 (1):31-53.
    Reasoning from a naturalistic perspective, viewing the mind as an evolved biological organ with a particular structure and function, a number of influential philosophers and cognitive scientists claim that science is constrained by human nature. How exactly our genetic constitution constrains scientific representations of the world remains unclear. This is problematic for two reasons. Firstly, it often leads to the unwarranted conclusion that we are cognitively closed to certain aspects or properties of the world. Secondly, it stands in the (...)
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  33. Is Panpsychism at Odds with Science?L. Roelofs - 2021 - Journal of Consciousness Studies 28 (9-10):116-128.
    Galileo’s Error is a superlative work of public philosophy, particularly as a way of introducing modern academic panpsychism to a broader audience. In this commentary, I reflect on an issue that is prominent, though often with different background concerns, in both academic and popular discourse: what it means to be ‘scientific’ or ‘unscientific’. Panpsychism is not itself a scientific hypothesis, but neither is it (as critics sometimes claim) in conflict with science. Indeed, Goff argues, and I agree, that panpsychism (...)
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  34. Prove it! The Burden of Proof Game in Science vs. Pseudoscience Disputes.Massimo Pigliucci & Maarten Boudry - 2014 - Philosophia 42 (2):487-502.
    The concept of burden of proof is used in a wide range of discourses, from philosophy to law, science, skepticism, and even in everyday reasoning. This paper provides an analysis of the proper deployment of burden of proof, focusing in particular on skeptical discussions of pseudoscience and the paranormal, where burden of proof assignments are most poignant and relatively clear-cut. We argue that burden of proof is often misapplied or used as a mere rhetorical gambit, with little appreciation of (...)
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  35. Functorial Semantics for the Advancement of the Science of Cognition.Venkata Posina, Dhanjoo N. Ghista & Sisir Roy - 2017 - Mind and Matter 15 (2):161-184.
    Cognition involves physical stimulation, neural coding, mental conception, and conscious perception. Beyond the neural coding of physical stimuli, it is not clear how exactly these component processes constitute cognition. Within mathematical sciences, category theory provides tools such as category, functor, and adjointness, which are indispensable in the explication of the mathematical calculations involved in acquiring mathematical knowledge. More speci cally, functorial semantics, in showing that theories and models can be construed as categories and functors, respectively, and in establishing the adjointness (...)
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  36. Metaphysics of Change and Continuity: Exactly What is Changing and What Gets Continued?Soraj Hongladarom - 2015 - Kilikya Felsefe Dergisi / Cilicia Journal of Philosophy 2 (2):41-60.
    This is a metaphysical and conceptual analysis of the concepts ‘change’ and ‘continuity’. The Buddhists are in agreement with Heraclitus that all are flowing and nothing remains. However, the Buddhists have a much more elaborate theory about change and continuity, and this theory is a key element in the entire Buddhist system of related doctrines, viz., that of karma and rebirth, the possibility of Liberation and others. Simply put, the Buddhist emphasizes that change is there in every aspect of reality. (...)
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  37. Topics in Mathematical Consciousness Science.Johannes Kleiner - 2024 - Dissertation, Munich Center for Mathematical Philosophy & Graduate School of Systemic Neurosciences, Ludwig Maximilian University of Munich
    The scientific study of consciousness, also referred to as consciousness science, is a young scientific field devoted to understanding how conscious experiences and the brain relate. It comprises a host of theories, experiments, and analyses that aim to investigate the problem of consciousness empirically, theoretically, and conceptually. This thesis addresses some of the questions that arise in these investigations from a formal and mathematical perspective. These questions concern theories of consciousness, experimental paradigms, methodology, and artificial consciousness. -/- Regarding theories (...)
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  38. Serendipity, AI and climate science: The role of non-linear thinking.A. I. S. D. L. Team - 2024 - Sm3D Portal.
    This first piece of 2024 introduces some ideas concerning the role of non-linear thinking in today's fight against the climate crisis. More exactly, it is about the potential power of serendipity, artificial intelligence and the information deluge (that is causing headaches, too) when it comes to humankind's efforts to find solutions for the sake of surviving the paramount crisis.
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  39. History of science and science combined: solving a historical problem in optics—the case of Galileo and his telescope.Giora Hon & Yaakov Zik - 2017 - Archive for History of Exact Sciences 71 (4):337-344.
    The claim that Galileo Galilei transformed the spyglass into an astronomical instrument has never been disputed and is considered a historical fact. However, the question what was the procedure which Galileo followed is moot, for he did not disclose his research method. On the traditional view, Galileo was guided by experience, more precisely, systematized experience, which was current among northern Italian artisans and men of science. In other words, it was a trial-and-error procedure—no theory was involved. A scientific analysis (...)
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  40. On the Fundamental Worldview of the Integral Culture: Integrating Science, Religion, and Art: Part Two.Attila Grandpierre - 2003 - World Futures 59 (7):535-556.
    In the present essay I suggest that the main reason why history failed to develop societies in harmony with Nature, including our internal nature as well, is that we failed to evaluate the exact basis of the factor ultimately governing our thoughts. We failed to realise that it is the worldview that ultimately governs our thoughts and through our thoughts, our actions. In this work I consider the ultimate foundations of philosophy, science, religion, and art, pointing out that (...)
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  41. Dark Matters and Hidden Variables of Unitary Science: How Neglected Complexity Generates Mysteries and Crises, from Quantum Mechanics and Cosmology to Genetics and Global Development Risks.Andrei P. Kirilyuk - manuscript
    The unreduced many-body interaction problem solution, absent in usual science framework, reveals a new quality of emerging multiple, equally real but mutually incompatible system configurations, or “realisations”, giving rise to the universal concept of dynamic complexity and chaoticity. Their imitation by a single, “average” realisation or trajectory in usual theory (corresponding to postulated “exact” or perturbative problem solutions) is a rough simplification of reality underlying all stagnating and emerging problems of conventional (unitary) science, often in the form (...)
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  42. From the end of Unitary Science Projection to the Causally Complete Complexity Science: Extended Mathematics, Solved Problems, New Organisation and Superior Purposes.Andrei P. Kirilyuk - 2017 - In Theory of Everything, Ultimate Reality and the End of Humanity: Extended Sustainability by the Universal Science of Complexity. Beau Bassin: LAP LAMBERT Academic Publishing. pp. 199-209.
    The deep crisis in modern fundamental science development is ever more evident and openly recognised now even by mainstream, official science professionals and leaders. By no coincidence, it occurs in parallel to the world civilisation crisis and related global change processes, where the true power of unreduced scientific knowledge is just badly missing as the indispensable and unique tool for the emerging greater problem solution and further progress at a superior level of complex world dynamics. Here we reveal (...)
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  43. Faces and brains: The limitations of brain scanning in cognitive science.Christopher Mole, Corey Kubatzky, Jan Plate, Rawdon Waller, Marilee Dobbs & Marc Nardone - 2007 - Philosophical Psychology 20 (2):197 – 207.
    The use of brain scanning now dominates the cognitive sciences, but important questions remain to be answered about what, exactly, scanning can tell us. One corner of cognitive science that has been transformed by the use of neuroimaging, and that a scanning enthusiast might point to as proof of scanning's importance, is the study of face perception. Against this view, we argue that the use of scanning has, in fact, told us rather little about the information processing underlying face (...)
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  44. The Idea Of a Religious Social Science.Khosrow Bagheri Noaparast - 2009 - Alhoda.
    In this book, the words ‘science’ and ‘social science’ are used in their limited sense that refer to experience-based knowledge. This should not indicate that experience is being used in a positivistic sense. Rather, the important insights of all kinds of post-positivist views are embraced to give an extensive meaning to experience. However, the most important characteristic of experience and science that should never be excluded is its dependence on observation and observational evidence. Thus, when ‘science (...)
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  45. Some Radical New Ideas About Consciousness 2012 - Consciousness and the Cosmos: A New Copernican Reolution, Part 1 Science, Consciousness and the Universe.Lorna Green - manuscript
    Some Radical New Ideas About Consciousness Consciousness and the Cosmos: A New Copernican Revolution -/- Consciousness is our new frontier in modern science. Most scientists believe that it can be accomodated, explained, by existing scientific principles. I say that it cannot. That it calls all existing scientific principles into question. That consciousness is to modern science just exactly what light was to classical physics: All of our fundamental assumptions about the nature of Reality have to change. And I (...)
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  46. Life is physics and chemistry and communication.Gunther Witzany - 2015 - In Guenther Witzany (ed.), DNA Habitats and Their RNA Inhabitants. pp. 1-9.
    Manfred Eigen extended Erwin Schroedinger’s concept of “life is physics and chemistry” through the introduction of information theory and cybernetic systems theory into “life is physics and chemistry and information.” Based on this assumption, Eigen developed the concepts of quasispecies and hypercycles, which have been dominant in molecular biology and virology ever since. He insisted that the genetic code is not just used metaphorically: it represents a real natural language.However, the basics of scientific knowledge changed dramatically within the second half (...)
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  47. Laura J. Snyder, Reforming Philosophy: A Victorian Debate on Science and Society[REVIEW]John P. McCaskey - 2008 - The Objective Standard 2008:107–109.
    The 19th-century philosopher John Stuart Mill is widely regarded as one of history’s leading proponents of inductive science and of political liberty. Yet, oddly, philosophers working in his train have been remarkably unsuccessful in saying exactly what is wrong with the scientific skepticism or the political tyrannies of the past one hundred and fifty years. Is it possible that Mr. Mill was not such a good guy after all? … I recommend the book to anyone interested in a scholarly (...)
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  48.  93
    Kant's Natural Philosophy.Marius Stan - forthcoming - Cambridge University Press.
    This Element analyzes Kant’s metaphysics and epistemology of the exact science of nature. It explains his theory of true motion and ontology of matter. In addition, it reconstructs the patterns of evidential reasoning behind Kant’s foundational doctrines.
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  49. Kant and the Object of Determinate Experience.Marius Stan - 2015 - Philosophers' Imprint 15:1-19.
    On an influential view, Newton's mechanics is built into Kant's very theory of exact knowledge. However, Newtonian dynamics had serious explanatory limits already known by 1750. Thus, we might worry that Kant's Analytic is too narrow to ground enough exact knowledge. In this paper, I draw on Enlightenment dynamics to show that Kant's notion of determinate objecthood is sufficiently broad, non-trivial, and still relevant to the present.
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  50. Jerusalem Divided: The Hebrew University’s Philosophy Department Between Rotenstreich and Bar-Hillel.Tal Meir Giladi - 2023 - Philosophia 51 (4):1949-1976.
    The years following Israel’s founding were formative ones for the development of philosophy as an academic discipline in this country. During this period, the distinction between philosophy seen as contiguous with the humanities and social sciences, and philosophy seen as adjacent to the natural and exact sciences began to make its presence felt in the Hebrew University of Jerusalem. This distinction, which was manifest in the curriculum, was by no means unique to the Hebrew University, but reflected the broader (...)
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