Results for 'Scientific Paradigm'

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  1. Rethinking the Feasibility of Pancasila as a Scientific Paradigm.Taufiqurrahman Taufiqurrahman - 2023 - Pancasila: Jurnal Keindonesiaan 3 (2):204-214.
    Some academics and state officials in Indonesia argue for the adoption of Pancasila as a scientific paradigm for the country's scientific endeavours. They believe that using Pancasila as a foundation could give Indonesian science a distinct and unique character. However, this article seeks to reevaluate the feasibility of Pancasila as a scientific paradigm. By reviewing the literature on Pancasila and the philosophy of science, it arrives at the conclusion that Pancasila cannot serve as a (...) paradigm, either in a narrow or comprehensive sense. Two primary reasons support this conclusion. Firstly, Pancasila lacks the necessary characteristics of a well-established scientific achievement. As a result, it cannot function as a scientific paradigm in the narrow sense defined by Kuhn. Secondly, Pancasila carries theological baggage that surpasses science’s capacity to accommodate it. This aspect prevents Pancasila from becoming a comprehensive scientific paradigm. Consequently, I propose that Pancasila is more suitable as an axiological basis for science, rather than a scientific paradigm. Unlike a scientific paradigm, this axiological foundation does not fall within the epistemic scope of science. (shrink)
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  2. The Fallacies of Scientific Paradigms.Tathagata Dey & Shreyans Chatterjee - manuscript
    The world of physical sciences and mathematics have been dealing with universal phenomena for a long time. Over centuries, many theories and hypotheses have been formed to explain each of the observed and explainable natural events. All though the truth beyond this is still uncertain. With, upcoming experimental and observed results, the theories get changed over time for multiple turns. Also, the complexity of these theories is another significant aspect. All the theories vary from each other in structure, work of (...)
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  3. Three Paradigms of Scientific Realism: A Truthmaking Account.Jamin Asay - 2013 - International Studies in the Philosophy of Science 27 (1):1-21.
    This paper investigates the nature of scientific realism. I begin by considering the anomalous fact that Bas van Fraassen’s account of scientific realism is strikingly similar to Arthur Fine’s account of scientific non-realism. To resolve this puzzle, I demonstrate how the two theorists understand the nature of truth and its connection to ontology, and how that informs their conception of the realism debate. I then argue that the debate is much better captured by the theory of truthmaking, (...)
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  4. Paradigm Shift: A ‘Strange’ Case of a Scientific Revolution.Brendan Shea - 2018 - In W. Irwin & White M. (eds.), Dr. Strange and Philosophy: The Other Book of Forbidden Knowledge. The Blackwell Series in Popular Culture and Philosophy. Wiley. pp. 139-150.
    Dr. Strange sees Dr. Stephen Strange abandon his once-promising medical career to become a superhero with the ability to warp time and space, and to travel through various dimensions. In order to make this transition, he is required to abandon many of his previous assumptions about the way the world works and learn to see things in a new way. Importantly, this is not merely a matter of learning a few facts, or of mastering new techniques. Instead, Dr. Strange is (...)
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  5.  74
    Scientific perspectivism: realism, antirealism, or a new paradigm? / Научный перспективизм: реализм, антиреализм или новая парадигма?Vadim Chaly - 2022 - Tomsk State University Journal of Philosophy, Sociology and Political Science 70 (4):80-90.
    The current state of philosophy of science is characterized by stasis in the struggle between realism and antirealism. In recent years, a number of authors have come out with a program of scientific perspectivism that claims to sublate this great collision and gain the status of a new epistemological paradigm: “perspectivism, or, better, perspectival realism, is one of the newest attempts to find a middle ground between scientific realism and antirealism” [1. P. 2]. Important milestones of the (...)
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  6.  95
    Heavy Water: A School of Romanian Scientific and Technological Research, a Paradigm in Kuhn's Sense.Nicolae Sfetcu - 2023 - Bucharest, Romania: MultiMedia Publishing.
    From the position of a simple employee of the Drobeta Turnu Severin Heavy Water Plant, as a quality assurance inspector, the head of the destructive and non-destructive control laboratories, and finally the head of the quality assurance service, I had the honor to participate, between 1983 and 1993, in the largest technical-scientific project in Romania at that time, which involved universities, countless research institutes, design institutes, factories and construction-assembly companies, which, forced to use exclusively Romanian materials and solutions, had (...)
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  7. The Next Paradigm.Bernardo Kastrup - 2018 - Future Human Image 9:41-51.
    In order to perceive the world, we need more than just raw sensory input: a subliminal paradigm of thought is required to interpret raw sensory data and, thereby, create the objects and events we perceive around ourselves. As such, the world we see reflects our own unexamined, culture-bound assumptions and expectations, which explains why every generation in history has believed that it more or less understood the world. Today, we perceive a world of objects and events outside and independent (...)
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  8. Understanding Scientific Progress: Aim-Oriented Empiricism.Nicholas Maxwell - 2017 - St. Paul, USA: Paragon House.
    "Understanding Scientific Progress constitutes a potentially enormous and revolutionary advancement in philosophy of science. It deserves to be read and studied by everyone with any interest in or connection with physics or the theory of science. Maxwell cites the work of Hume, Kant, J.S. Mill, Ludwig Bolzmann, Pierre Duhem, Einstein, Henri Poincaré, C.S. Peirce, Whitehead, Russell, Carnap, A.J. Ayer, Karl Popper, Thomas Kuhn, Imre Lakatos, Paul Feyerabend, Nelson Goodman, Bas van Fraassen, and numerous others. He lauds Popper for advancing (...)
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  9. Basic Paradigm Change: Communicative Rationality Approach.Rinat M. Nugayev (ed.) - 2003 - Dom Pechati.
    Special Relativity and the Early Quantum Theory were created within the same programme of statistical mechanics, thermodynamics and maxwellian electrodynamics reconciliation. I shall try to explain why classical mechanics and classical electrodynamics were “refuted” almost simultaneously or, in more suitable for the present congress terms, why did quantum revolution and the relativistic one both took place at the beginning of the 20-th century. I shall argue that quantum and relativistic revolutions were simultaneous since they had common origin - the clash (...)
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  10. Thought styles and paradigms—a comparative study of Ludwik Fleck and Thomas S. Kuhn.Nicola Mößner - 2011 - Studies in History and Philosophy of Science Part A 42 (2):362–371.
    At first glance there seem to be many similarities between Thomas S. Kuhn’s and Ludwik Fleck’s accounts of the development of scientific knowledge. Notably, both pay attention to the role played by the scientific community in the development of scientific knowledge. But putting first impressions aside, one can criticise some philosophers for being too hasty in their attempt to find supposed similarities in the works of the two men. Having acknowledged that Fleck anticipated some of Kuhn’s later (...)
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  11. Unification and Revolution: A Paradigm for Paradigms.Nicholas Maxwell - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):133-149.
    Incommensurability was Kuhn’s worst mistake. If it is to be found anywhere in science, it would be in physics. But revolutions in theoretical physics all embody theoretical unification. Far from obliterating the idea that there is a persisting theoretical idea in physics, revolutions do just the opposite: they all actually exemplify the persisting idea of underlying unity. Furthermore, persistent acceptance of unifying theories in physics when empirically more successful disunified rivals can always be concocted means that physics makes a persistent (...)
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  12. Quantum Mechanics and Paradigm Shifts.Valia Allori - 2015 - Topoi 34 (2):313-323.
    It has been argued that the transition from classical to quantum mechanics is an example of a Kuhnian scientific revolution, in which there is a shift from the simple, intuitive, straightforward classical paradigm, to the quantum, convoluted, counterintuitive, amazing new quantum paradigm. In this paper, after having clarified what these quantum paradigms are supposed to be, I analyze whether they constitute a radical departure from the classical paradigm. Contrary to what is commonly maintained, I argue that, (...)
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  13. A Paradigm Shift, or a Paradigm Adjustment? The Evolution of the Oleaceae Mating System as a Small-Scale Kuhnian Case Study.Francq Alexandre, Billiard Sylvain, Saumitou-Laprade Pierre & Vernet Philippe - 2023 - The Quarterly Review of Biology 98 (2):61-83.
    Kuhn (1962) proposed an evolutionary model to explain how scientific knowledge is built, based on the concept of paradigm. Even though Kuhn’s model is general, it has been applied to only a few topics in evolutionary biology, almost exclusively to broad-based paradigms. We analyze here, through the lens of Kuhn’s theory, a small-scale paradigm change that occurred with the resolution of the controversy about the mating system of a Mediterranean shrub Phillyrea angustifolia (Oleaceae). We first summarize the (...)
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  14.  67
    On an Ongoing Paradigm Shift.Johan Gamper - manuscript
    I don’t believe in the foundation of our current scientific-philosophical paradigm. What does that matter? It matters because I have dug deep, especially into the body-mind issue, and found that it is something wrong with our paradigm. There is an anomaly. I haven’t realized, though, that this anomaly may be my own construction. I have been frustrated and have been acting out on the frustration. I’m sorry for that. I think, though, that a paradigm shift may (...)
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  15. Scientific realism with historical essences: the case of species.Marion Godman - 2018 - Synthese 198 (Suppl 12):3041-3057.
    Natural kinds, real kinds, or, following J.S Mill simply, Kinds, are thought to be an important asset for scientific realists in the non-fundamental (or “special”) sciences. Essential natures are less in vogue. I show that the realist would do well to couple her Kinds with essential natures in order to strengthen their epistemic and ontological credentials. I argue that these essential natures need not however be intrinsic to the Kind’s members; they may be historical. I concentrate on assessing the (...)
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  16. Interweaving categories: Styles, paradigms, and models.Rasmus Grønfeldt Winther - 2012 - Studies in History and Philosophy of Science Part A 43 (4):628-639.
    Analytical categories of scientific cultures have typically been used both exclusively and universally. For instance, when styles of scientific research are employed in attempts to understand and narrate science, styles alone are usually employed. This article is a thought experiment in interweaving categories. What would happen if rather than employ a single category, we instead investigated several categories simultaneously? What would we learn about the practices and theories, the agents and materials, and the political-technological impact of science if (...)
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  17. The Kuhnian Paradigm.Rogier De Langhe - 2013 - Topoi 32 (1):65-73.
    Kuhn wanted to install a new research agenda in philosophy of science. I argue that the tools are now available to better articulate his paradigm and let it guide philosophical research instead of itself remaining the object of philosophical debate.
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  18. Relativity Current Paradigm with Unresolved Anomalies.Alfonso Leon Guillen Gomez - 2014 - Journal of Modern Physics 5:364-374.
    When a theory, as the general relativity, linked to special relativity, is foundation of a scientific paradigm, through normal science and academy, scientifics, professionals, professors, students and journals of that scientific community, the paradigm, it self-sustains and reproduces. Thus, the research is obligated and limited to apply the model existent of the paradigm to formulate problems and solve them, without searching new discoveries. This self-protection of the paradigm causes it to end its cycle of (...)
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  19. Sudden Enlightenment: Paradigm-Shifting Awakening.Sun Kyeong Yu - 2023 - Apa Studies on Asian and Asian American Philosophers and Philosophies.
    Sudden enlightenment is awakening to be attained all at once. Hyun-Eung, a Korean Buddhist monastic, has proposed a new interpretation that sudden enlightenment is the revolutionary awakening of the dynamical and indivisible structure of cognitive subject and objects. I argue that Hyun-Eung’s ‘revolutionary enlightenment’ is achieved through a ‘paradigm shift’ in Thomas Kuhn’s sense as presented in his The Structure of Scientific Revolutions. Enlightenment is obtained when one’s essentialist and realist worldview is replaced, through a revolutionary change of (...)
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  20. A pragmatic approach to scientific change: transfer, alignment, influence.Stefano Canali - 2022 - European Journal for Philosophy of Science 12 (3):1-25.
    I propose an approach that expands philosophical views of scientific change, on the basis of an analysis of contemporary biomedical research and recent developments in the philosophy of scientific change. Focusing on the establishment of the exposome in epidemiology as a case study and the role of data as a context for contrasting views on change, I discuss change at conceptual, methodological, material, and social levels of biomedical epistemology. Available models of change provide key resources to discuss this (...)
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  21. Philosophy of Science, Network Theory, and Conceptual Change: Paradigm Shifts as Information Cascades.Patrick Grim, Joshua Kavner, Lloyd Shatkin & Manjari Trivedi - forthcoming - In Euel Elliot & L. Douglas Kiel (eds.), Complex Systems in the Social and Behavioral Sciences: Theory, Method, and Application. University of Michigan Press.
    Philosophers have long tried to understand scientific change in terms of a dynamics of revision within ‘theoretical frameworks,’ ‘disciplinary matrices,’ ‘scientific paradigms’ or ‘conceptual schemes.’ No-one, however, has made clear precisely how one might model such a conceptual scheme, nor what form change dynamics within such a structure could be expected to take. In this paper we take some first steps in applying network theory to the issue, modeling conceptual schemes as simple networks and the dynamics of change (...)
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  22. The Historiography of Scientific Revolutions: A Philosophical Reflection.Yafeng Shan - 2023 - In Mauro L. Condé & Marlon Salomon (eds.), Handbook for the Historiography of Science. Springer. pp. 257-273.
    Scientific revolution has been one of the most controversial topics in the history and philosophy of science. Yet it has been no consensus on what is the best unit of analysis in the historiography of scientific revolutions. Nor is there a consensus on what best explains the nature of scientific revolutions. This chapter provides a critical examination of the historiography of scientific revolutions. It begins with a brief introduction to the historical development of the concept of (...)
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  23. Attributing scientific and technological progress: The case of holography.Sean F. Johnston - 2005 - History and Technology 21:367-392.
    Holography, the three-dimensional imaging technology, was portrayed widely as a paradigm of progress during its decade of explosive expansion 1964–73, and during its subsequent consolidation for commercial and artistic uses up to the mid 1980s. An unusually seductive and prolific subject, holography successively spawned scientific insights, putative applications and new constituencies of practitioners and consumers. Waves of forecasts, associated with different sponsors and user communities, cast holography as a field on the verge of success—but with the dimensions of (...)
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  24. Time's Paradigm.Alan Graham & Alan R. Graham - 2020
    This wide ranging discourse covers many disciplines of science and the human condition in an attempt to fully understand the manifestation of time. Time's Paradigm is, at its inception, a philosophical debate between the theories of 'Presentism' and 'The Block Model', beginning with a pronounced psychological analysis of 'free will' in an environment where the past and the future already exist. It lays the foundation for the argument that time is a cyclical, contained progression, rather than a meandering voyage (...)
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  25. What makes economics special: orientational paradigms.Paul Hoyningen-Huene & Harold Kincaid - 2023 - Journal of Economic Methodology (2):1-15.
    From the mid-1960s until the late 1980s, the well-known general philosophies of science of the time were applied to economics. The result was disappointing: none seemed to fit. This paper argues that this is due to a special feature of economics: it possesses ‘orientational paradigms’ in high number. Orientational paradigms are similar to Kuhn’s paradigms in that they are shared across scientific communities, but dissimilar to Kuhn’s paradigms in that they are not generally accepted as valid guidelines for further (...)
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  26. Scientific Research on Homosexuality and its Philosophical Implications; Plus the Roles of Parenting and “Okonkwo Complex” in Sexual Identity Development.Diana-Abasi Ibanga - 2017 - IOSR Journal of HumanitieS and Social Science 22 (6):61-69.
    In this study, I aimed to subject to philosophical analysis the scientific data from biological science researches that are conducted into the phenomenon of homosexuality in order to give philosophical interpretation to it thereby establishing the normative values of the scientific findings. From the study, I observed that much of the scientific data on homosexuality established the phenomenon as ingrained in the human biological construct. I argued that although homoeroticism is biological construct of the homosexual, parenting plays (...)
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  27. The Many Meanings of Sustainability: A Competing Paradigms Approach.Paul B. Thompson - 2016 - In Steven A. Moore (ed.), Pragmatic Sustainability: Dispositions for Critical Adaptation. New York: pp. 16-28.
    Although the word 'sustainability' is used broadly, scientific approaches to sustainability fall into one of two competing paradigms. Following the influential Brundtland report of 1987. some theorists identify sustainability with some form of resource availability, and develop indicators for sustainability that stress capital depletion. This approach has spawned debates about the intersubstitutivity of capitals, with many environmental theorists arguing that at some point, depletion of natural capital cannot be offset by increases in human or social capital. The alternative approach (...)
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  28. Fritz Jahr as Methodological Paradigm in Bioethical Education.Luka Perušić - 2019 - Jahr 10 (2):287-310.
    The paper examines Fritz Jahr as a possible role-model in bioethical education. It consists of two parts. The first part builds upon the acknowledged data and theories about how Fritz Jahr proposed the bioethical imperative and changed his way of thinking. It provides arguments for and against known claims and expands the knowledge background with the focus on reconstructing the thought process and some presumptions that led to the formulation of bioethical imperative. The second part uses these results to infer (...)
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  29. Isaac Asimov’s sci-fi novella “Profession” versus professionalism: Reflections on the (missing) scientific revolutions in the 21th century.Vasil Penchev - 2024 - Philosophy of Science eJournal (Elsevier: SSRN) 17 (42):1-38.
    This is a partly provocative essay edited as a humanitarian study in philosophy of science and social philosophy. The starting point is Isaac Asimov’s famous sci-fi novella “Profession” (1957) to be “back” extrapolated to today’s relation between Thomas Kuhn’s “normal science” and “scientific revolutions” (1962). The latter should be accomplished by Asimov’s main personage George Platen’s ilk (called “feeble minded” in the novella) versus the “burned minded” professionals able only to “normal science”. Francis Fukuyama’s “end of history” in post-Hegelian (...)
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  30. Unity in the Scientific Study of Intellectual Attention.Mark Fortney - 2020 - Canadian Journal of Philosophy 50 (4):444-459.
    I argue that using information from a cognitive representation to guide the performance of a primary task is sufficient for intellectual attention, and that this account of attention is endorsed by scientists working in the refreshing, n-back, and retro-cue paradigms. I build on the work of Wayne Wu, who developed a similarly motivated account, but for perceptual attention rather than intellectual attention. The way that I build on Wu’s account provides a principled way of responding to Watzl’s challenge to Wu, (...)
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  31. The new paradigm: quantum interbeing.Brian Wachter - manuscript
    It is the conclusion advanced in this paper that there is a necessary and sufficient causal relationship between theory of mind and the neurological creation of conscious and unconscious quantum logic existing in superposition in the human brain. It takes two intelligent agents to make one self-aware agent. -/- A key element of my reasoning is the instantiation of superposition by way of a logical device I call the “state-system.” The newly conscious human remains unaware of the inner transformation caused (...)
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  32. Transoral laser surgery for laryngeal carcinoma: has Steiner achieved a genuine paradigm shift in oncological surgery?A. T. Harris, Attila Tanyi, R. D. Hart, J. Trites, M. H. Rigby, J. Lancaster, A. Nicolaides & S. M. Taylor - 2018 - Annals of the Royal College of Surgeons of England 100 (1):2-5.
    Transoral laser microsurgery applies to the piecemeal removal of malignant tumours of the upper aerodigestive tract using the CO2 laser under the operating microscope. This method of surgery is being increasingly popularised as a single modality treatment of choice in early laryngeal cancers (T1 and T2) and occasionally in the more advanced forms of the disease (T3 and T4), predomi- nantly within the supraglottis. Thomas Kuhn, the American physicist turned philosopher and historian of science, coined the phrase ‘paradigm shift’ (...)
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  33. Descartes and the scientific revolution: Some Kuhnian reflections.Daniel Garber - 2001 - Perspectives on Science 9 (4):405-422.
    Important to Kuhn's account of scientific change is the observation that when paradigms are in competition with one another, there is a curious breakdown of rational argument and communication between adherents of competing programs. He attributed this to the fact that competing paradigms are incommensurable. The incommensurability thesis centrally involves the claim that there is a deep conceptual gap between competing paradigms in science. In this paper I argue that in one important case of competing paradigms, the Aristotelian explanation (...)
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  34. The didactic, persuasive and scientific uses of illustrations after Descartes.Andrea Strazzoni - 2015 - Noctua 2 (1-2):432-480.
    The aim of this article is to unveil the ways of teaching new philosophical paradigms in Dutch Universities between Seventeenth and Eighteenth Century, by means of an analysis of the uses of illustrations in Cartesian and Newtonian natural-philosophical textbooks. This analysis allows to understand the overall functions of philosophical textbooks, where illustrations act as conceptual means, filling the gap between the premise of a theory and its actual contents; didactic means, aiming to help the reader in understanding scientific models (...)
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  35. Dynamical versus structural explanations in scientific revolutions.Mauro Dorato - 2017 - Synthese 194 (7):2307-2327.
    By briefly reviewing three well-known scientific revolutions in fundamental physics (the discovery of inertia, of special relativity and of general relativity), I claim that problems that were supposed to be crying for a dynamical explanation in the old paradigm ended up receiving a structural explanation in the new one. This claim is meant to give more substance to Kuhn’s view that revolutions are accompanied by a shift in what needs to be explained, while suggesting at the same time (...)
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  36.  65
    A few little steps beyond Knuth’s Boolean Logic Table with Neutrosophic Logic: A Paradigm Shift in Uncertain Computation.Florentin Smarandache & Victor Christianto - 2023 - Prospects for Applied Mathematics and Data Analysis 2 (2):22-26.
    The present article delves into the extension of Knuth’s fundamental Boolean logic table to accommodate the complexities of indeterminate truth values through the integration of neutrosophic logic (Smarandache & Christianto, 2008). Neutrosophic logic, rooted in Florentin Smarandache’s groundbreaking work on Neutrosophic Logic (cf. Smarandache, 2005, and his other works), introduces an additional truth value, ‘indeterminate,’ enabling a more comprehensive framework to analyze uncertainties inherent in computational systems. By bridging the gap between traditional boolean operations and the indeterminacy present in various (...)
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  37. The Second Scientific Revolution: Genesis and Advancement of Non-Classical Science.Rinat M. Nugayev - 2023 - Moscow: Triumph Publishers.
    What were the true reasons of the second scientific revolution? – To answer the question, the epistemic model is applied, according to which radical breakthroughs in science were not due to the fanciful excogitation of new ideas ‘ex nihilo’, but rather to the tedious, long-term and troublesome processes of the mutual lapping, reconciliation, interpenetration and intertwinement of ‘old’ research traditions preceding such breaks. It is contended that Einstein's 'annus mirabilis' constituted an acme of the second scientific revolution. To (...)
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  38. Feminism and Psychedelic Therapy: How scientific values can help or hinder potentially fruitful avenues of research.Flo McCarthy-Doig - 2020 - Dissertation, University of Edinburgh
    This dissertation is an investigation into how scientific values may influence the kinds of theories which are investigated, and in turn which theories become ‘mainstream’. I have focussed on psychedelic therapy as a family of theories, and I identified three main reasons as to why psychedelic therapy is somewhat incompatible with the current psychiatric paradigm: (1) the inability to conduct double-blind trials, (2) The inability to isolate one explanatory variable, and (3) The mystical and spiritual dimensions of the (...)
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  39. The Humanistic Paradigm and Bio-Psyhco-Social Approach as a Basis of Social Support for People with Mental Health Problems.Nataliia Bondarenko - 2018 - Psychology and Psychosocial Interventions 1:8-14.
    The article discusses the actual problem of social support for people with mental health problems, which has an important place in the study field of social psychology and social work.The article also deals with the definition of the concept of “mental health”, the problem of introducing the term “mental health problems” as a way to avoid stigmatization, and the spread of a humanistic attitude to persons with a psychiatric diagnosis. It also discussed modern theoretical approaches that offer an understanding of (...)
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  40. Crowdsourced science: sociotechnical epistemology in the e-research paradigm.David Watson & Luciano Floridi - 2018 - Synthese 195 (2):741-764.
    Recent years have seen a surge in online collaboration between experts and amateurs on scientific research. In this article, we analyse the epistemological implications of these crowdsourced projects, with a focus on Zooniverse, the world’s largest citizen science web portal. We use quantitative methods to evaluate the platform’s success in producing large volumes of observation statements and high impact scientific discoveries relative to more conventional means of data processing. Through empirical evidence, Bayesian reasoning, and conceptual analysis, we show (...)
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  41. In the beginning was the verb: The emergence and evolution of language problem in the light of the big Bang epistemological paradigm.Edward G. Belaga - 2008 - Cognitive Philology 1 (1).
    The enigma of the Emergence of Natural Languages, coupled or not with the closely related problem of their Evolution is perceived today as one of the most important scientific problems. The purpose of the present study is actually to outline such a solution to our problem which is epistemologically consonant with the Big Bang solution of the problem of the Emergence of the Universe}. Such an outline, however, becomes articulable, understandable, and workable only in a drastically extended epistemic and (...)
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  42. The role of cognitive values in the shaping of scientific rationality.Jan Faye - 2008 - In Evandro Agazzi (ed.), Science and Ethics. The Axiological Contexts of Science. (Series: Philosophy and Politics. Vol. 14. Vienna: P.I.E. Peter Lang. pp. 125-140.
    It is not so long ago that philosophers and scientists thought of science as an objective and value-free enterprise. But since the heyday of positivism, it has become obvious that values, norms, and standards have an indispensable role to play in science. You may even say that these values are the real issues of the philosophy of science. Whatever they are, these values constrain science at an ontological, a cognitive, a methodological, and a semantic level for the purpose of making (...)
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  43. Ecology, Evolution, Ethics: In Search of a Meta-paradigm – An Introduction.Donato Bergandi - 2013 - In The Structural Links Between Ecology, Evolution and Ethics: The Virtuous Epistemic Circle. Dordrecht, Netherland: Springer. pp. 1-28.
    Evolutionary, ecological and ethical studies are, at the same time, specific scientific disciplines and, from an historical point of view, structurally linked domains of research. In a context of environmental crisis, the need is increasingly emerging for a connecting epistemological framework able to express a common or convergent tendency of thought and practice aimed at building, among other things, an environmental policy management respectful of the planet’s biodiversity and its evolutionary potential.
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  44.  87
    TRANSBIOPOLITICS AND PARADIGMAL EXPLANATION of INTERNATIONAL RELATIONS: COVID-19 FACTOR.Cheshko Valentin - 2021 - In I. K. Golovko І.В. Ishchenko & Ishchenko Olena Mykolayivna (eds.), Proceedings of the international scientific and practical conference CURRENT PROBLEMS OF MODERN INTERNATIONAL RELATIONS Ukraine, Dnipro November 05-06, 2021. Dnipro, Ukraine: PrintDim; MINISTRY OF EDUCATION AND SCIENCE OF UKRAINE. pp. 169-174.
    The coronavirus pandemic is evidence of the evolutionary instability of the sociocultural and ecological niche. The current crisis has not only ontological but also epistemic roots; its cause lies in the main evolutionary trends in the development of science as a social institution. And only then the epistemic factors were transformed into existential-ontological ones, connected with the very existence of civilization and our biosocial nature. The way out of the crisis is the unalterable development of all sectors of technologies of (...)
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  45. Physics and ontology - or The 'ontology-ladenness' of epistemology and the 'scientific realism'-debate.Rudolf Lindpointner - manuscript
    The question of what ontological insights can be gained from the knowledge of physics (keyword: ontic structural realism) cannot obviously be separated from the view of physics as a science from an epistemological perspective. This is also visible in the debate about 'scientific realism'. This debate makes it evident, in the form of the importance of perception as a criterion for the assertion of existence in relation to the 'theoretical entities' of physics, that epistemology itself is 'ontologically laden'. This (...)
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  46. The change of scientific knowledge of Thomas Kuhn and Karl Popper.Ayça Solak - 2021 - Dissertation,
    This thesis study is about the leading philosophers of philosophy of science of the twentieth century Karl Popper and Thomas Kuhn and their asserted views about science and scientific knowledge and the method, standard and limit of science. Popper who emphasises the deductive method of science and its standard which should be falsifiable indicates that scientific knowledge should have a testable and falsifiable pattern. Kuhn, on the other hand, discusses the standard of scientificity connected to the existing (...) and its emerging problem solving in other words he accepts it as a "puzzle solving activity" and terminatively associates scientificity with sociological factors. Accordingly, in this thesis study by taking into consideration Popper and Kuhn's differences of opinion aimed at science and its knowledge, the arguments of development and scientific progress within the frame of their own terminology is being evaluated. Then, Popper and Kuhn's thoughts considering the standards of science and the arguments about progress and development of scientific knowledge is being transferred in a comparable and analytical manner. As a result it is advocated that Popper and Kuhn accept the existence of the change of scientific knowledge based on scientific progress and development and that this change is a change of opinion which is continuing nonstop. (shrink)
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  47. Linguistic Research in the Empirical Paradigm as Outlined by Mario Bunge.Dorota Zielińska - 2022 - Mεtascience: Scientific General Discourse 2:182-202.
    In view of the critique of the methodology of the dominant interdisciplinary re-search involving language studies as the main component, in particular clinical linguistics, Cummings (2014) proposes that “It is perhaps appropriate at this point to move the debate onto non-empirical grounds.” In Cummings (2014: 113) she starts such a debate on the grounds of the philosophy of language and pragmatics. In this article, I propose to expand that debate by including the input of the philosophy of science. I start (...)
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  48. Beyond Kuhn: Methodological Contextualism and Partial Paradigms.Darrell P. Rowbottom - 2018 - In Moti Mizrahi (ed.), The Kuhnian Image of Science: Time for a Decisive Transformation? London: Rowman & Littlefield. pp. 191-208.
    Kuhn’s view of science is as follows. Science involves two key phases: normal and extraordinary. In normal science, disciplinary matrices (DMs) are large and pervasive. DMs involve “beliefs, values, techniques, and so on shared by the members of a given community” (Kuhn 1996, 175). “And so on” is regrettably vague, but Kuhn (1977, 1996) mentions three other key elements: symbolic generalizations (such as F=dp/dt), models (such as Bohr’s atomic model), and exemplars. These components of DMs overlap somewhat. For instance, symbolic (...)
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  49. La recherche linguistique dans le paradigme empirique proposé par Mario Bunge.Dorota Zielińska - 2022 - Mεtascience: Discours Général Scientifique 2:219-241.
    Compte tenu de la critique de la méthodologie de la recherche interdisciplinaire dominante impliquant des études linguistiques comme élément principal, en particulier la linguistique clinique, Cummings (2014) propose qu’« il est peut-être approprié à ce stade de déplacer le débat sur des bases non empiriques ». Dans Cummings (2014), elle entame un tel débat sur la base de la philosophie de la langue et de la pragmatique. Dans cet article, je propose d’élargir ce débat en incluant l’apport de la philosophie (...)
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  50. What Is Truth?: On the Need for an Old Paradigm.Richard Oxenberg - 2018 - Political Animal Magazine.
    In this essay I argue for the need to restore our recognition of the importance of philosophical truth in our endeavor to understand our world and our selves. In particular, I note that the physical sciences have no way of examining the axiological dimension of being - i.e., that dimension from which values spring - whereas an appreciation for, and understanding of, our values is crucial to the conduct of our personal, interpersonal, and political lives.
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