Results for 'rigorous science'

953 found
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  1. The Idea of Rigorous Science in Husserl’s Phenomenology and Its Relevance for the other Sciences.Victor Eugen Gelan - 2015 - In Mihai-Dan Chiţoiu Ioan-Alexandru Tofan (ed.), Proceedings of the International Conference “Humanities and Social Sciences Today. Classical and Contemporary Issues” – Philosophy and Other Humanities. Pro Universitaria. pp. 141-156.
    In this paper I intend to grapple with the idea of philosophy as rigorous science from the point of view of Husserl‟s phenomenology in order to show that this idea may have an important contribution to the way in which the scientific character of sciences in general, and of human and social sciences in particular, is being conceived. As rigorous science, phenomenology emphasizes and investigates the a priori context of other sciences. In this way, it plays (...)
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  2. Brentano's conception of philosophy as rigorous science.Wolfgang Huemer - 2018 - Brentano Studien 16 (1):53-72.
    Abstract: Brentano’s conception of scientific philosophy had a strong influence on his students and on the intellectual atmosphere of Vienna in the late nineteenth century. The aim of this article is to expose Brentano’s conception and to contrast his views with that of two traditions he is said to have considerably influenced: phenomenology and analytic philosophy. I will shed light on the question of how and to what extent Brentano’s conception of philosophy as a rigorous science has had (...)
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  3. Quantum phenomenology as a “rigorous science”: the triad of epoché and the symmetries of information.Vasil Penchev - 2021 - Philosophy of Science eJournal (Elsevier: SSRN) 14 (48):1-18.
    Husserl (a mathematician by education) remained a few famous and notable philosophical “slogans” along with his innovative doctrine of phenomenology directed to transcend “reality” in a more general essence underlying both “body” and “mind” (after Descartes) and called sometimes “ontology” (terminologically following his notorious assistant Heidegger). Then, Husserl’s tradition can be tracked as an idea for philosophy to be reinterpreted in a way to be both generalized and mathenatizable in the final analysis. The paper offers a pattern borrowed from the (...)
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  4. All science as rigorous science: the principle of constructive mathematizability of any theory.Vasil Penchev - 2020 - Logic and Philosophy of Mathematics eJournal 12 (12):1-15.
    A principle, according to which any scientific theory can be mathematized, is investigated. Social science, liberal arts, history, and philosophy are meant first of all. That kind of theory is presupposed to be a consistent text, which can be exhaustedly represented by a certain mathematical structure constructively. In thus used, the term “theory” includes all hypotheses as yet unconfirmed as already rejected. The investigation of the sketch of a possible proof of the principle demonstrates that it should be accepted (...)
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  5. Computational Thought Experiments for a More Rigorous Philosophy and Science of the Mind.Iris Oved, Nikhil Krishnaswamy, James Pustejovsky & Joshua Hartshorne - 2024 - In L. K. Samuelson, S. L. Frank, M. Toneva, A. Mackey & E. Hazeltine (eds.), Proceedings of the 46th Annual Conference of the Cognitive Science Society. CC BY. pp. 601-609.
    We offer philosophical motivations for a method we call Virtual World Cognitive Science (VW CogSci), in which researchers use virtual embodied agents that are embedded in virtual worlds to explore questions in the field of Cognitive Science. We focus on questions about mental and linguistic representation and the ways that such computational modeling can add rigor to philosophical thought experiments, as well as the terminology used in the scientific study of such representations. We find that this method forces (...)
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  6. Ciencias Sociales y Literatura Latinoamericana: Del rigor científico que aprendimos a una teoría de las emociones.Daniel Castro Aniyar & Oleski Miranda - 2006 - Cinta de Moebio 25.
    Latin American rigorous thought has consisted of a reconstruction of western rigorous thought. This inflexion is not only limited to literary practice, it also, and most importantly, reaches all sciences, and here visibly touches the social sciences. As such, the relation between literature and t..
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  7. Open Science Saves Lives: Lessons from the COVID-19 Pandemic.Lonni Besançon, Nathan Peiffer-Smadja, Corentin Segalas, Haiting Jiang, Paola Masuzzo, Cooper Smout, Maxime Deforet & Clémence Leyrat - 2020 - bioRxiv 2020 (8):1-19.
    In the last decade Open Science principles, such as Open Access, study preregistration, use of preprints, making available data and code, and open peer review, have been successfully advocated for and are being slowly adopted in many different research communities. In response to the COVID-19 pandemic many publishers and researchers have sped up their adoption of some of these Open Science practices, sometimes embracing them fully and sometimes partially or in a sub-optimal manner. In this article, we express (...)
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  8. Science Advice in New Zealand: opportunities for development.Ben Jeffares - 2019 - Policy Quarterly 15 (2):62-71.
    What is the state of play for science advice to the government and Parliament? After almost ten years with a prime minister’s chief science advisor, are there lessons to be learnt? How can we continue to ensure that science advice is effective, balanced, transparent and rigorous, while at the same time balancing the need for discretion and confidentiality? In this article, we suggest that the hallmarks of good science – transparency and peer review – can (...)
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  9.  80
    Artificial intelligence and retracted science.Minh-Hoang Nguyen & Quan-Hoang Vuong - manuscript
    Technology firms are now purchasing access to research papers from academic publishers to train their artificial intelligence (AI) models. Using scientific content to train AI can come with multiple benefits, which help improve AI's capability to generate trustworthy outcomes, understand and process issues across a wide range of topics, as well as analyze information, make logical deductions, and draw conclusions. Journal articles are generally considered reliable because of the rigorous peer review system. However, the evaluation process is constrained by (...)
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  10. Science, Knowledge, Wisdom and the Public Good.Nicholas Maxwell - 2003 - Scientists for Global Responsibility Newsletter 1 (26 February 2003):7-9.
    What kind of science – or, more generally, what kind of academic inquiry – can best contribute to the public good? Two answers are considered: knowledge-inquiry and wisdom-inquiry. The former is what we have at present. It is, however, damagingly irrational. The latter is more rigorous and, potentially, of greater value in human and intellectual terms. It arises as a result of putting the Enlightenment Programme properly into practice. We urgently need to bring about a revolution in academia, (...)
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  11. (1 other version)Imagination: A New Foundation for the Science of Mind.Stephen T. Asma - 2022 - Biological Theory 1:1-7.
    After a long hiatus, psychology and philosophy are returning to formal study of imagination. While excellent work is being done in the current environment, this article argues for a stronger thesis than usually adopted. Imagination is not just a peripheral feature of cognition or a domain for aesthetic research. It is instead the core operating system or cognitive capacity for humans and has epistemic and therapeutic functions that ground all our sense-making activities. A sketch of imagination as embodied cognition is (...)
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  12. 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 rigorously (...)
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  13. What’s Wrong With Science? Towards a People’s Rational Science of Delight and Compassion, Second Edition.Nicholas Maxwell - 2009 - London: Pentire Press.
    What ought to be the aims of science? How can science best serve humanity? What would an ideal science be like, a science that is sensitively and humanely responsive to the needs, problems and aspirations of people? How ought the institutional enterprise of science to be related to the rest of society? What ought to be the relationship between science and art, thought and feeling, reason and desire, mind and heart? Should the social sciences (...)
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  14. (1 other version)A New Task for the Philosophy of Science.Nicholas Maxwell - 2019 - Metaphilosophy (3):316-338.
    We philosophers of science have before us an important new task that we need urgently to take up. It is to convince the scientific community to adopt and implement a new philosophy of science that does better justice to the deeply problematic basic intellectual aims of science than that which we have at present. Problematic aims evolve with evolving knowledge, that part of philosophy of science concerned with aims and methods thus becoming an integral part of (...)
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  15. The History of Science as a Graveyard of Theories: A Philosophers’ Myth?Moti Mizrahi - 2016 - International Studies in the Philosophy of Science 30 (3):263-278.
    According to the antirealist argument known as the pessimistic induction, the history of science is a graveyard of dead scientific theories and abandoned theoretical posits. Support for this pessimistic picture of the history of science usually comes from a few case histories, such as the demise of the phlogiston theory and the abandonment of caloric as the substance of heat. In this article, I wish to take a new approach to examining the ‘history of science as a (...)
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  16. 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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  17. Causally Complete Science for the Reason-Based Society.Andrei P. Kirilyuk - 2023 - Fqxi Essay Contest - Spring, 2023: How Could Science Be Different?.
    Modern fundamental science tends to avoid the principle of physical causality and realism, replacing it with heuristically postulated and separated mathematical constructions that impose their own rules before being adjusted to measurement results. While it is officially accepted as the single possible kind of rigorous knowledge, we argue that another, explicitly extended kind of science can provide the causally complete picture of reality avoiding the glaring gaps, growing problems and persisting stagnation of the artificially reduced knowledge paradigm. (...)
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  18. 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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  19. Methodology of the Sciences.Lydia Patton - 2015 - In Michael N. Forster & Kristin Gjesdal (eds.), Oxford Handbook of German Philosophy in the Nineteenth Century. Oxford: Oxford University Press. pp. 594-606.
    In the growing Prussian university system of the early nineteenth century, "Wissenschaft" (science) was seen as an endeavor common to university faculties, characterized by a rigorous methodology. On this view, history and jurisprudence are sciences, as much as is physics. Nineteenth century trends challenged this view: the increasing influence of materialist and positivist philosophies, profound changes in the relationships between university faculties, and the defense of Kant's classification of the sciences by neo-Kantians. Wilhelm Dilthey's defense of the independence (...)
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  20. Science, Medicine, and the Aims of Inquiry: A Philosophical Analysis.Somogy Varga - 2024 - New York, NY, USA: Cambridge University Press.
    Amid criticism of medicine's scientific rigor and patient care, this book offers a philosophical examination of the nature and aims of medicine, and new perspectives on how these challenges can be addressed. It offers input for rethinking the agenda of medical research, healthcare delivery, and the education of healthcare personnel.
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  21. Digital Literature Analysis for Empirical Philosophy of Science.Oliver M. Lean, Luca Rivelli & Charles H. Pence - 2021 - British Journal for the Philosophy of Science (4):875-898.
    Empirical philosophers of science aim to base their philosophical theories on observations of scientific practice. But since there is far too much science to observe it all, how can we form and test hypotheses about science that are sufficiently rigorous and broad in scope, while avoiding the pitfalls of bias and subjectivity in our methods? Part of the answer, we claim, lies in the computational tools of the digital humanities, which allow us to analyze large volumes (...)
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  22. Science and Rationality for One and All.P. D. Magnus - 2014 - Ergo 1 (5):129-138.
    It seems obvious that a community of one thousand scientists working together to make discoveries and solve puzzles should arrange itself differently than would one thousand scientist-hermits working independently. Because of limited time, resources, and attention, an independent scientist can explore only some of the possible approaches to a problem. Working alone, each hermit would explore the most promising approaches. They would needlessly duplicate the work of others and would be unlikely to develop approaches which look unpromising but really have (...)
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  23. Can “Formal Theology” Ground a Religion for Science, or, a Religion for Scientists?Johan Gamper - manuscript
    In my old manuscript “Formal Theology” that now is out as a preprint I show that science and theology can be founded upon the same set of basic assumptions. I now follow up this idea with the thought that Formal Theology may be used to ground also a religion. “Religion“, in this regard, as related to beliefs. I’m not going into any details, neither concerning the original manuscript, nor this new idea. The important thing, I think, is to explore (...)
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  24. Spirit calls Nature: A Comprehensive Guide to Science and Spirituality, Consciousness and Evolution in a Synthesis of Knowledge.Marco Masi - 2021 - Indy Edition.
    This is a technical treatise for the scientific-minded readers trying to expand their intellectual horizon beyond the straitjacket of materialism. It is dedicated to those scientists and philosophers who feel there is something more, but struggle with connecting the dots into a more coherent picture supported by a way of seeing that allows us to overcome the present paradigm and yet maintains a scientific and conceptual rigor, without falling into oversimplifications. Most of the topics discussed are unknown even to neuroscientists, (...)
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  25.  56
    The tragedy of the canon; or, path dependence in the history and philosophy of science.Agnes Bolinska & Joseph D. Martin - 2021 - Studies in History and Philosophy of Science Part A 89 (C):63-73.
    We have previously argued that historical cases must be rendered canonical before they can plausibly serve as evidence for philosophical claims, where canonicity is established through a process of negotiation among historians and philosophers of science (Bolinska and Martin, 2020). Here, we extend this proposal by exploring how that negotiation might take place in practice. The working stock of historical examples that philosophers tend to employ has long been established informally, and, as a result, somewhat haphazardly. The composition of (...)
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  26. Self-reference, Phenomenology, and Philosophy of Science.Steven James Bartlett - 1980 - Methodology and Science: Interdisciplinary Journal for the Empirical Study of the Foundations of Science and Their Methodology 13 (3):143-167.
    The paper begins by acknowledging that weakened systematic precision in phenomenology has made its application in philosophy of science obscure and ineffective. The defining aspirations of early transcendental phenomenology are, however, believed to be important ones. A path is therefore explored that attempts to show how certain recent developments in the logic of self-reference fulfill in a clear and more rigorous fashion in the context of philosophy of science certain of the early hopes of phenomenologists. The resulting (...)
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  27. Creativity and the new structure of science.Andrei Kirilyuk - manuscript
    A qualitatively new, much more liberal and efficient organisation of science is proposed and justified in connection with emerging international science structures, such as the European Research Council, and growing debates about further role and development of fundamental science. Although the ideas are expressed in terms of "common sense" arguments accessible to a "general" audience, they are based on the rigorous analysis within the recently advanced "universal concept of complexity", which can be applied, due to its (...)
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  28. State of the field: Are the results of science contingent or inevitable?Katherina Kinzel - 2015 - Studies in History and Philosophy of Science Part A 52:55-66.
    This paper presents a survey of the literature on the problem of contingency in science. The survey is structured around three challenges faced by current attempts at understanding the conflict between “contingentist” and “inevitabilist” interpretations of scientific knowledge and practice. First, the challenge of definition: it proves hard to define the positions that are at stake in a way that is both conceptually rigorous and does justice to the plethora of views on the issue. Second, the challenge of (...)
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  29. Theory of Everything, Ultimate Reality and the End of Humanity: Extended Sustainability by the Universal Science of Complexity.Andrei P. Kirilyuk - 2017 - Beau Bassin: LAP LAMBERT Academic Publishing.
    Instead of postulated fixed structures and abstract principles of usual positivistic science, the unreduced diversity of living world reality is consistently derived as dynamically emerging results of unreduced interaction process development, starting from its simplest configuration of two coupled homogeneous protofields. The dynamically multivalued, or complex and intrinsically chaotic, nature of these real interaction results extends dramatically the artificially reduced, dynamically single-valued projection of standard theory and solves its stagnating old and accumulating new problems, “mysteries” and “paradoxes” within the (...)
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  30. This Year's Nobel Prize (2022) in Physics for Entanglement and Quantum Information: the New Revolution in Quantum Mechanics and Science.Vasil Penchev - 2023 - Philosophy of Science eJournal (Elsevier: SSRN) 18 (33):1-68.
    The paper discusses this year’s Nobel Prize in physics for experiments of entanglement “establishing the violation of Bell inequalities and pioneering quantum information science” in a much wider, including philosophical context legitimizing by the authority of the Nobel Prize a new scientific area out of “classical” quantum mechanics relevant to Pauli’s “particle” paradigm of energy conservation and thus to the Standard model obeying it. One justifies the eventual future theory of quantum gravitation as belonging to the newly established quantum (...)
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  31. Evidence, Testimony, and Trust: How the COVID-19 Pandemic is Exacerbating the Crisis of Trust in Science.Clarisse Paron - 2021 - The Canadian Society for Study of Practical Ethics / Société Canadienne Pour L'étude de L'éthique Appliquée 6:1-18.
    In this paper, I consider an example of fast science produced in the early stages of the pandemic and the lasting effects of the study on public safety and trust in science. Due to pressures intrinsic to contemporary science and from the pandemic to produce research on COVID quickly, studies on COVID-19 that did not meet rigorous scientific standards were used to form public health policies and recommendations. I argue that the fast science produced for (...)
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  32. The challenge of the oceanic feeling: Romain Rolland’s mystical critique of psychoanalysis and his call for a ‘new science of the mind’.Ayon Maharaj - 2017 - History of European Ideas 43 (5):1-20.
    In a letter written in 1927, the French writer Romain Rolland asked Sigmund Freud to analyse the “oceanic feeling,” a religious feeling of oneness with the entire universe. I will argue that Rolland’s intentions in introducing the oceanic feeling to Freud were much more complex, multifaceted, and critical than most scholars have acknowledged. To this end, I will examine Rolland’s views on mysticism and psychoanalysis in his book-length biographies of the Indian saints Sri Ramakrishna and Swami Vivekananda, which he wrote (...)
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  33. Mathematics as the Science of Pure Structure.John-Michael Kuczynski - manuscript
    A brief but rigorous description of the logical structure of mathematical truth.
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  34. Intelligently Designing Deliberative Health Care Forums: Dewey's Metaphysics, Cognitive Science and a Brazilian Example.Shane J. Ralston - 2008 - Review of Policy Research 25 (6):619-630.
    Imagine you are the CEO of a hospital [. . .]. Decisions are constantly being made in your organization about how to spend the organization's money. The amount of money available to spend is never adequate to pay for everything you wish you could spend it on, therefore you must set spending priorities. There are two questions you need to be able to answer . . . How should we set priorities in this organization? How do we know when we (...)
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  35. Infinitesimals as an issue of neo-Kantian philosophy of science.Thomas Mormann & Mikhail Katz - 2013 - Hopos: The Journal of the International Society for the History of Philosophy of Science (2):236-280.
    We seek to elucidate the philosophical context in which one of the most important conceptual transformations of modern mathematics took place, namely the so-called revolution in rigor in infinitesimal calculus and mathematical analysis. Some of the protagonists of the said revolution were Cauchy, Cantor, Dedekind,and Weierstrass. The dominant current of philosophy in Germany at the time was neo-Kantianism. Among its various currents, the Marburg school (Cohen, Natorp, Cassirer, and others) was the one most interested in matters scientific and mathematical. Our (...)
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  36. Clean Language Interviewing as a Second-Person Method in the Science of Consciousness.Jan Nehyba & James Lawley - 2020 - Journal of Consciousness Studies 27 (1-2):94-119.
    This article reports on Clean Language Interviewing (CLI), a rigorous, recently developed 'content-empty' (non-leading) approach to second-person interviewing in the science of consciousness. Also presented is a new systematic third-person method of validation that evaluates the questions and other verbal interventions by the interviewer to produce an adherence-to-method or 'cleanness' rating. A review of 19 interviews from five research studies provides a benchmark for interviewers seeking to minimize leading questions. The inter-rater reliability analysis demonstrates substantial agreement among raters (...)
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  37. A Little More Logical: Reasoning Well About Science, Ethics, Religion, and the Rest of Life (2nd edition).Brendan Shea - 2024 - Rochester, MN: Thoughtful Noodle Books.
    In a world filled with information overload and complex problems, the ability to think logically is a superpower. "A Little More Logical" is your guide to mastering this essential skill. This engaging and accessible open educational resource is perfect for students, teachers, and lifelong learners who want to improve their critical thinking abilities and make better decisions in all aspects of life. -/- Through a series of fun and interactive chapters, "A Little More Logical" covers a wide range of topics, (...)
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  38. The realist and selectionist explanations for the success of science.Seungbae Park - 2022 - Synthese 200 (3):1-12.
    According to realists, theories are successful because they are true, but according to selectionists, theories are successful because they have gone through a rigorous selection process. Wray claims that the realist and selectionist explanations are rivals to each other. Lee objects that they are instead complementary to each other. In my view, Lee’s objection presupposes that the realist explanation is true, and thus it begs the question against selectionists. By contrast, the selectionist explanation invokes a scientific theory, and thus (...)
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  39. Steven Matthews, Theology and Science in Francis Bacon’s Thought[REVIEW]John P. McCaskey - 2009 - Technology and Culture 50:685-686.
    This work intentionally joins Stephen A. McKnight’s The Religious Foundations of Francis Bacon’s Thought in arguing that Sir Francis Bacon was more deeply religious than he is conventionally thought to have been. Though the book is full of interesting suggestions, a lack of breadth, rigor, and precision will leave many readers unconvinced. . . . Those who know the corpus and secondary literature enough to read critically will find here provocative suggestions and intriguing leads. Others will need to be cautious (...)
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  40. How to study well-being: A proposal for the integration of philosophy with science.Michael Prinzing - 2021 - Review of General Psychology 25 (2):152-162.
    There are presently two approaches to the study of well-being. Philosophers typically focus on normative theorizing, attempting to identify the things that are ultimately good for a person, while largely ignoring empirical research. The idea is that empirical attention cannot be directed to the right place without a rigorous theory. Meanwhile, social scientists typically focus on empirical research, attempting to identify the causes and consequences of well-being, while largely ignoring normative theorizing. The idea is that conceptual and theoretical clarity (...)
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  41. Post-Continental Naturalism: Equipollence between Science and Ontological Pluralism. [REVIEW]Ekin Erkan - 2020 - Rhizomes: Cultural Studies in Emerging Knowledge 36.
    Ian James has carved a rigorous analysis of four philosophers—Jean-Luc Nancy, François Laruelle, Catherine Malabou and Bernard Stiegler—who not only engage with the limits of thought through variegated, albeit embedded, disciplinary tendencies but have also, arguably, spearheaded a critical reorientation of continental philosophy, slowly opening the doors for transcending the traditional terms of the analytic-continental divide by engaging with a pluralized understanding of the sciences. A parallel plexus of American naturalist philosophy accompanies James’ analysis, as he stakes the claim (...)
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  42. (1 other version)A proposal to refine concept mapping for effective science learning.Meena Kharatmal & Nagarjuna G. - 2006 - In A. J. Canas & J. D. Novak (eds.), Concept Maps: Theory, Methodology, Technology Proc. of the Second Int. Conference on Concept Mapping.
    Concept maps are found to be useful in eliciting knowledge, meaningful learning, evaluation of understanding and in studying the nature of changes taking place during cognitive development, particularly in the classroom. Several experts have claimed the effectiveness of this tool for learning science. We agree with the claim, but the effectiveness will improve only if we gradually introduce a certain amount of discipline in constructing the maps. The discipline is warranted, we argue, because science thrives to be an (...)
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  43. A pluralistic framework for the psychology of norms.Evan Westra & Kristin Andrews - 2022 - Biology and Philosophy 37 (5):1-30.
    Social norms are commonly understood as rules that dictate which behaviors are appropriate, permissible, or obligatory in different situations for members of a given community. Many researchers have sought to explain the ubiquity of social norms in human life in terms of the psychological mechanisms underlying their acquisition, conformity, and enforcement. Existing theories of the psychology of social norms appeal to a variety of constructs, from prediction-error minimization, to reinforcement learning, to shared intentionality, to domain-specific adaptations for norm acquisition. In (...)
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  44. The Unity of the Brentano School.Arnaud Dewalque - 2017 - In Uriah Kriegel (ed.), The Routledge Handbook of Franz Brentano and the Brentano School. London and New York: Routledge. pp. 236-248.
    Franz Brentano’s works are not just full of deep and innovative insights into mind, world and values. His views also turned out to be highly influential upon several generations of students, who made them the basis of their own philosophical investigations, giving rise to what is known as the Brentano School (Albertazzi et al. 1996; Fisette & Fréchette 2007). In this chapter, I give a bird’s eye view of the Brentano School from a rather historical perspective. My leading hypothesis is (...)
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  45. Is Brentano's Method a Unifying Element of the Brentano School?Wolfgang Huemer - 2019 - Rivista di Filosofia Neo-Scolastica (4):897-910.
    Among historians of philosophy it is often taken for granted that the “Brentano school” was one of the influential philosophical movements at the end of the nineteenth and the beginning of the twentieth century – but Brentano’s own contributions are often eclipsed by that of his direct students. This invites to reflect on the nature of and the unity within the school. Since Brentano’s conception of a rigorous, scientific philosophy had a strong impact on his students, it has been (...)
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  46. Comments on Damasio, Eliot & Hauser.Tim Crane - unknown
    A distinctive feature of recent popular science writing is the parade of books by distinguished scientists – from Roger Penrose to Francis Crick and Gerald Edelman – which attempt solutions to the traditional problems of mind and consciousness. The Feeling of What Happens by neuroscientist Antonio Damasio lies squarely in this tradition, as did his earlier Descartes’ Error. These books, like those of Penrose, Crick and others, attempt a difficult double task: to explain scientific results to the general reader (...)
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  47. Hilbert arithmetic as a Pythagorean arithmetic: arithmetic as transcendental.Vasil Penchev - 2021 - Philosophy of Science eJournal (Elsevier: SSRN) 14 (54):1-24.
    The paper considers a generalization of Peano arithmetic, Hilbert arithmetic as the basis of the world in a Pythagorean manner. Hilbert arithmetic unifies the foundations of mathematics (Peano arithmetic and set theory), foundations of physics (quantum mechanics and information), and philosophical transcendentalism (Husserl’s phenomenology) into a formal theory and mathematical structure literally following Husserl’s tracе of “philosophy as a rigorous science”. In the pathway to that objective, Hilbert arithmetic identifies by itself information related to finite sets and series (...)
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  48. How to explain the failure to explain consciousness.Yuriy Rotenfeld - manuscript
    At the heart of one of the many problems concerning consciousness, there are flaws in our thinking that impede a philosophical understanding of the world. At the same time, I understand philosophy as a rigorous science aimed at “knowledge of the general”, reflecting the most fundamental and universal relations of reality, meaningful thanks to two types of comparative concepts. One of them is specific-scientific comparative concepts of different types, reflecting the beginnings of natural scientific knowledge, while the second (...)
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  49. How to explain the fail inexplaining consciousness.Yuriy Rotenfeld - manuscript
    At the heart of one of the many problems concerning consciousness, there are flaws in our thinking that impede a philosophical understanding of the world. At the same time, I understand philosophy as a rigorous science aimed at “knowledge of the general”, reflecting the most fundamental and universal relations of reality, meaningful thanks to two types of comparative concepts. One of them is specific-scientific comparative concepts of different types, reflecting the beginnings of natural scientific knowledge, while the second (...)
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  50. Phenomenology of a Photograph, or: How to use an Eidetic Phenomenology.L. Sebastian Purcell - 2010 - PhaenEx 5 (1):12-40.
    The present article aims to make good on Roland Barthe’s unfulfilled promise to provide an eidetic phenomenology for the photograph. Though the matter deserves consideration simply because no relevant account has yet been provided, the consequences of adumbrating eight eidetic features, we hope to show, bear directly on the phenomenology of time, the possibility of technological events, and the status of truth as what Heidegger called alētheia . Finally, and most importantly for the enterprise of phenomenological reflection, if we are (...)
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