Results for 'scientific thinking'

948 found
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  1. Why/How to Study Scientific Thinking.Nancy J. Nersessian - forthcoming - Qualitative Psychology.
    Scientific research is a highly complex and creative domain of human activity. In addition to its intrinsic value, understanding scientific thinking provides insight into the creative potential of human psychological capacities, as they are imbedded in rich social, material, and cultural environments. I discuss findings from my own investigations using two forms of qualitative research suited to studying scientific thinking as situated in context: cognitive-historical and cognitive-ethnographic.
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  2. Feynman's Diagrams, Pictorial Representations and Styles of Scientific Thinking.Dorato Mauro & Emanuele Rossanese - 2017
    In this paper we argue that the different positions taken by Dyson and Feynman on Feynman diagrams’ representational role depend on different styles of scientific thinking. We begin by criticizing the idea that Feynman Diagrams can be considered to be pictures or depictions of actual physical processes. We then show that the best interpretation of the role they play in quantum field theory and quantum electrodynamics is captured by Hughes' Denotation, Deduction and Interpretation theory of models (DDI), where (...)
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  3. Critical and Scientific Thinking: A short introduction.Michael Vlerick - 2022 - Tilburg Open Press.
    “Critical thinking is one of the biggest hiatuses in our education system. Learning to distinguish sense from nonsense is of great importance in the information age that we live in. In a systematic way, this book helps you to gain insight into, and subsequently eliminate, the most important reasoning errors that we all tend to make. It also helps you to debunk weak and fallacious arguments and unreliable information. -/- In addition to understanding what critical and scientific (...) entails, you will learn more about what makes science reliable. In times of skepticism regarding science, where (sometimes dangerous) pseudoscientific and conspiracy theories run rampant, this is particularly important. -/- Critical thinking is not a matter of intellectual preference or even self-interest (although one certainly benefits from thinking critically). It is first and foremost a matter of moral and social responsibility. Better thinking leads to a better world. With this book I hope to contribute to that important goal and you, dear student or reader, can do the same!” - Michael Vlerick -/- . (shrink)
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  4. Scientism and Scientific Thinking.Renia Gasparatou - 2017 - Science & Education 26 (7-9):799-812.
    The move from respecting science to scientism, i.e., the idealization of science and scientific method, is simple: We go from acknowledging the sciences as fruitful human activities to oversimplifying the ways they work, and accepting a fuzzy belief that Science and Scientific Method, will give us a direct pathway to the true making of the world, all included. The idealization of science is partly the reason why we feel we need to impose the so-called scientific terminologies and (...)
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  5. The scientific study of passive thinking: Methods of mind wandering research.Samuel Murray, Zachary C. Irving & Kristina Krasich - 2022 - In Felipe de Brigard & Walter Sinnott-Armstrong (eds.), Neuroscience and philosophy. Cambridge, Massachusetts: The MIT Press. pp. 389-426.
    The science of mind wandering has rapidly expanded over the past 20 years. During this boom, mind wandering researchers have relied on self-report methods, where participants rate whether their minds were wandering. This is not an historical quirk. Rather, we argue that self-report is indispensable for researchers who study passive phenomena like mind wandering. We consider purportedly “objective” methods that measure mind wandering with eye tracking and machine learning. These measures are validated in terms of how well they predict self-reports, (...)
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  6. Gagnrýnin og vísindaleg hugsun [English title: "Scientific versus Critical Thinking"].Finnur Dellsén - 2016 - Skírnir 190:321-342.
    English summary: This paper engages with a tradition in Icelandic philosophy of theorizing about critical thinking. The central thesis of the paper is that critical thinking should not be identified with scientific thinking, since scientific research is often (and inevitably so) based on a kind of epistemic trust in other scientists' testimony that is incompatible with critical thinking. The paper also criticizes the idea that critical thinking should be associated with any of Charles (...)
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  7. Scientific styles, plain truth, and truthfulness.Robert Kowalenko - 2018 - South African Journal of Philosophy 37 (3):361-378.
    Ian Hacking defines a “style of scientific thinking” loosely as a “way to find things out about the world” characterised by five hallmark features of a number of scientific template styles. Most prominently, these are autonomy and “self-authentication”: a scientific style of thinking, according to Hacking, is not good because it helps us find out the truth in some domain, it itself defines the criteria for truth-telling in its domain. I argue that Renaissance medicine, Mediaeval (...)
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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. The Contribution of the Rejection Mechanism to Scientific Knowledge Production: A View from Granular Interaction Thinking and Information Theories.Quan-Hoang Vuong & Minh-Hoang Nguyen - 2024 - Qeios Preprint.
    Rejection is an essential part of the scholarly publishing process, acting as a filter to distinguish between robust and less credible scientific works. This study examines the advantages and limitations of the rejection mechanism through the lens of Shannon’s information theory and the theory of granular interactions thinking. We argue that while rejection helps reduce entropy and increase the likelihood of disseminating useful knowledge, the process is not devoid of subjectivity. We propose two recommendations to improve the rejection (...)
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  10. Doing versus Thinking: John Dewey’s Forgotten Critique of Scientific Management.Shane J. Ralston - 2014 - Southwest Philosophy Review 30 (1):205-217.
    Scientific management introduced a novel way of organizing work and measuring productivity into the modern workplace. With a stopwatch and a clever method of analysis, Frederick Winslow Taylor is either acclaimed or reviled, depending on the audience, for giving industrial/organizational consultancy a groundbreaking tool: the efficiency study. What is less well known is that the American pragmatist John Dewey criticized scientific management for its dualistic assumptions, for treating workers as pure doers or “muscle” and management as pure thinkers (...)
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  11. How scientific psychology shapes minds.Devin Sanchez Curry - forthcoming - In Tad Zawidzki (ed.), Routledge Handbook of Mindshaping.
    The mind and brain sciences influence how human beings understand one another. Histories of the concepts of repression, implicit bias, ADHD, IQ, and personhood reveal that scientific psychology has played a role, not just in shaping people's thinking about minds, but also (and thereby) in shaping minds themselves. These case studies may thus be seen as supporting the contentious thesis that science aids in the social construction of minds. Three considerations are relevant to determining how seriously we should (...)
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  12. The Ontic Account of Scientific Explanation.Carl F. Craver - 2014 - In Marie I. Kaiser, Oliver R. Scholz, Daniel Plenge & Andreas Hüttemann (eds.), Explanation in the special science: The case of biology and history. Dordrecht: Springer. pp. 27-52.
    According to one large family of views, scientific explanations explain a phenomenon (such as an event or a regularity) by subsuming it under a general representation, model, prototype, or schema (see Bechtel, W., & Abrahamsen, A. (2005). Explanation: A mechanist alternative. Studies in History and Philosophy of Biological and Biomedical Sciences, 36(2), 421–441; Churchland, P. M. (1989). A neurocomputational perspective: The nature of mind and the structure of science. Cambridge: MIT Press; Darden (2006); Hempel, C. G. (1965). Aspects of (...)
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  13. Correlative Thinking in Pacific Island (Micronesian) Cultural Philosophies.James Sellmann - 2021 - Pacific Asia Inquiry: Multidisciplinary Perspectives 11:154-175.
    To continue the project of explicating Pacific values and worldviews, this paper focuses on correlative thinking in some of the cultural philosophies of the Pacific islands, especially Micronesia. Correlative thinking differs, in degree, from scientific and academic logic that emphasize the truth-value of statements. After examining aspects of correlative thinking in Bali and the Philippines, I extract some characteristics of Pacific philosophies from cultural practices, myths, and beliefs. Unlike William Alkire (Alkire, 1972), I find that Pacific (...)
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  14.  77
    Creating clear and reliable scientific evidence for marine stakeholders with felt responsibility to act against climate change.Minh-Hoang Nguyen, Ruining Jin, Minh-Phuong Thi Duong, Tam-Tri Le & Quan-Hoang Vuong - manuscript
    Climate change prevention necessitates the communication of transparent and reliable scientific evidence to improve public awareness and support. Felt responsibility is an essential factor influencing human environment-related psychology and behavior. However, the knowledge about the relationship between the felt responsibility and perceived uncertainty of scientific evidence regarding climate change has remained limited. The current study examines factors associated with the perceived uncertainty of scientific evidence (including felt responsibility to act on climate change) among stakeholders of marine and (...)
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  15. Philosophy of Scientific Theories. The First Essay: Names and Realities.Vladimir Kuznetsov & O. Gabovіch - 2023 - Kyiv: Naukova Dumka. Edited by Tetyana Gardashuk.
    The English Synopsis is after the text of the book. The book presents an original and generalizing substantive vision of the philosophy of science through the prism of a detailed analysis of the polysystem structure of scientific theories. Theories are considered, firstly, as complex specialized forms of developed scientific thinking about the realities studied by natural science, secondly, as constantly improving tools for producing new knowledge in interaction with experimental research, and thirdly, as carriers of ordered and (...)
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  16. Scientific essentialism in the light of classification practice in biology – a case study of phytosociology.Adam P. Kubiak & Rafał R. Wodzisz - 2012 - Zagadnienia Naukoznawstwa 48 (194):231-250.
    In our paper we investigate a difficulty arising when one tries to reconsiliateessentialis t’s thinking with classification practice in the biological sciences. The article outlinessome varieties of essentialism with particular attention to the version defended by Brian Ellis. Weunderline the basic difference: Ellis thinks that essentialism is not a viable position in biology dueto its incompatibility with biological typology and other essentialists think that these two elementscan be reconciled. However, both parties have in common metaphysical starting point and theylack (...)
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  17. Scientific Realism and the Plasticity of Mind.Adam Morton - 1982 - Philosophical Review 91 (2):299.
    I assess Churchland's views on folk psychology and conceptual thinking, with particular emphasis on the connection between these topics.
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  18. “Critical Thinking: An Approach that Synthesizes Analytic Philosophy”.Sanjit Chakraborty - 2017 - Indian Philosophical Quarterly 44 (1):67-78.
    This paper concentrates on the resurrection of the journey of analytic philosophy from the perspective of ‘critical thinking,’ a tool of proper thought and understanding. To define an era of philosophy as analytic seems indeed a difficult attempt. However, my attempt would be to look up a few positions from the monumental thoughts of Frege, Russell, Carnap, Wittgenstein, Quine, and Putnam on their ‘analysis’ minded outlooks that developed in different ways based on logic, scientific spirit, conceptual, language etc. (...)
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  19. Beyond Dilthey: The Parallelization of Natural and Social Scientific Methods and the Emergence of Complex Thinking.Marco Crosa - 2023 - Sofia Philosophical Review 15 (2):151-158.
    After two centuries, the Diltheyan idea of the incommensurability of the natural and social sciences remains hegemonic. Alternative visions have since been overlooked; in this regard, the Baden neo-Kantian school showed that any divergence concerns implied method and not the phenomenal object of studies. W. Windelband coined the terms “nomological” and “idiographic” to underline how each discipline can be explained as a science of both law and events. To begin, I will show how complex thinking can expand and institute (...)
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  20. Humean scientific explanation.Elizabeth Miller - 2015 - Philosophical Studies 172 (5):1311-1332.
    In a recent paper, Barry Loewer attempts to defend Humeanism about laws of nature from a charge that Humean laws are not adequately explanatory. Central to his defense is a distinction between metaphysical and scientific explanations: even if Humeans cannot offer further metaphysical explanations of particular features of their “mosaic,” that does not preclude them from offering scientific explanations of these features. According to Marc Lange, however, Loewer’s distinction is of no avail. Defending a transitivity principle linking (...) explanantia to their metaphysical grounds, Lange argues that a charge of explanatory inadequacy resurfaces once this intuitive principle is in place. This paper surveys, on behalf of the Humean, three strategies for responding to Lange’s criticism. The ready availability of these strategies suggests that Lange’s argument may not bolster anti-Humean convictions, since the argument rests on premises that those not antecedently sharing these convictions may well reject. The three strategies also correspond to three interesting ways of thinking about relations of grounding linking Humean laws and their instances, all of which are consistent with theses of Humean supervenience, and some of which have been heretofore overlooked. (shrink)
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  21. Thinking about Progress: From Science to Philosophy.Finnur Dellsén, Insa Lawler & James Norton - 2022 - Noûs 56 (4):814-840.
    Is there progress in philosophy? If so, how much? Philosophers have recently argued for a wide range of answers to these questions, from the view that there is no progress whatsoever to the view that philosophy has provided answers to all the big philosophical questions. However, these views are difficult to compare and evaluate, because they rest on very different assumptions about the conditions under which philosophy would make progress. This paper looks to the comparatively mature debate about scientific (...)
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  22. The Authenticity of Theology in ‎Scientific and Technological Thinking.Anhar Anshory, Ahmad Faizuddin Ramli & Ramli Awang - 2023 - Intellectual Discourse 31 (1).
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  23. What is Scientific Realism?Anjan Chakravartty & Bas C. Van - 2018 - Spontaneous Generations 9 (1):12-25.
    Decades of debate about scientific realism notwithstanding, we find ourselves bemused by what different philosophers appear to think it is, exactly. Does it require any sort of belief in relation to scientific theories and, if so, what sort? Is it rather typified by a certain understanding of the rationality of such beliefs? In the following dialogue we explore these questions in hopes of clarifying some convictions about what scientific realism is, and what it could or should be. (...)
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  24.  95
    The Problem of Differential Importability and Scientific Modeling.Anish Seal - 2024 - Philosophies 9 (6):164.
    The practice of science appears to involve “model-talk”. Scientists, one thinks, are in the business of giving accounts of reality. Scientists, in the process of furnishing such accounts, talk about what they call “models”. Philosophers of science have inspected what this talk of models suggests about how scientific theories manage to represent reality. There are, it seems, at least three distinct philosophical views on the role of scientific models in science’s portrayal of reality: the abstractionist view, the indirect (...)
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  25. Thinking and Perceiving: On the malleability of the mind.Dustin Stokes - 2021 - London: Routledge.
    [File is the introduction to the monograph] -/- Abstract to monograph -/- How and whether thinking affects perceiving is a deeply important question. Of course it is of scientific interest: to understand the human mind is to understand how we best distinguish its processes, how those processes interact, and what this implies for how and what we may know about the world. And so in the philosopher’s terms, this book is one on both mental architecture and the epistemology (...)
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  26. Five Pragmatist Insights on Scientific Expertise.Mathias Girel - 2020 - Philosophical Inquiries 8 (2):151-176.
    A common objection to a pragmatist perspective on scientific expertise is that, while there is a well-known pragmatist theory of inquiry, which was formulated first by Peirce, then refined by Dewey and others, this theory cannot provide a clear-cut account of scientific expertise. In this paper, after addressing this objection in the second section, I claim that, on the contrary, pragmatism offers robust tools to think scientific expertise. In Sections 3 to 7, I present five important insights (...)
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  27. (1 other version)Scientific Realism meets Metaphysics of Quantum Mechanics.Juha Saatsi - 2017 - In Philosophers Think About Quantum Theory.
    I examine the epistemological debate on scientific realism in the context of quantum physics, focusing on the empirical underdetermin- ation of different formulations and interpretations of QM. I will argue that much of the interpretational, metaphysical work on QM tran- scends the kinds of realist commitments that are well-motivated in the light of the history of science. I sketch a way of demarcating empirically well-confirmed aspects of QM from speculative quantum metaphysics in a way that coheres with anti-realist evidence (...)
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  28. Scientific Explanation as a Guide to Ground.Markel Kortabarria & Joaquim Giannotti - 2024 - Synthese 203 (3):1-27.
    Ground is all the rage in contemporary metaphysics. But what is its nature? Some metaphysicians defend what we could call, following Skiles and Trogdon (2021), the inheritance view: it is because constitutive forms of metaphysical explanation are such-and-such that we should believe that ground is so-and-so. However, many putative instances of inheritance are not primarily motivated by scientific considerations. This limitation is harmless if one thinks that ground and science are best kept apart. Contrary to this view, we believe (...)
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  29. 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 perspective (...)
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  30. Trusting scientific experts in an online world.Kenneth Boyd - 2022 - Synthese 200 (1):1-31.
    A perennial problem in social epistemology is the problem of expert testimony, specifically expert testimony regarding scientific issues: for example, while it is important for me to know information pertaining to anthropogenic climate change, vaccine safety, Covid-19, etc., I may lack the scientific background required to determine whether the information I come across is, in fact, true. Without being able to evaluate the science itself, then, I need to find trustworthy expert testifiers to listen to. A major project (...)
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  31. The scientific study of belief and pain modulation: conceptual problems.Miguel Farias, Guy Kahane & Nicholas Shackel - 2016 - In F. P. Mario, M. F. P. Peres, G. Lucchetti & R. F. Damiano (eds.), Spirituality, Religion and Health: From Research to Clinical Practice. Springer.
    We examine conceptual and methodological problems that arise in the course of the scientific study of possible influences of religious belief on the experience of physical pain. We start by attempting to identify a notion of religious belief that might enter into interesting psychological generalizations involving both religious belief and pain. We argue that it may be useful to think of religious belief as a complex dispositional property that relates believers to a sufficiently thick belief system that encompasses both (...)
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  32. Scientific Realism and the Future Development of Science.Seungbae Park - 2019 - Diametros 60:61-71.
    Nickles (2016, 2017, forthcoming) raises many original objections against scientific realism. One of them holds that scientific realism originates from the end of history illusion. I reply that this objection is self-defeating and commits the genetic fallacy. Another objection is that it is unknowable whether our descendants will regard our current mature theories as true or false. I reply that this objection entails skepticism about induction, leading to skepticism about the world, which is inconsistent with the appeal to (...)
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  33. Metascience. For a Scientific General Discourse.François Maurice - 2020 - Mεtascience: Scientific General Discourse 1:31-76.
    Human produce discourses on the world: mythologies, religions, mysticisms, philosophies, science. The majority of those discourses are transcendent in nature. Following a conceptual clarification based on the notions of reflection and general discourse, philosophy appears as a transcendent general discourse among others; hence the failure of the latter to account for the world and science; hence the need for a non-transcendent general discourse, a properly scientific general discourse, a metascience. In light of these redefined boundaries, it will be proposed (...)
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  34. Self-trust and critical thinking online: a relational account.Lavinia Marin & Samantha Marie Copeland - 2022 - Social Epistemology (6):696-708.
    An increasingly popular solution to the anti-scientific climate rising on social media platforms has been the appeal to more critical thinking from the user's side. In this paper, we zoom in on the ideal of critical thinking and unpack it in order to see, specifically, whether it can provide enough epistemic agency so that users endowed with it can break free from enclosed communities on social media (so called epistemic bubbles). We criticise some assumptions embedded in the (...)
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  35. The Scientific Study of Consciousness: Searle’s Radical Request.Mahesh Ananth - 2010 - PSYCHE: An Interdisciplinary Journal of Research On Consciousness 16 (2):59-89.
    John Searle offers what he thinks to be a reasonable scientific approach to the understanding of consciousness. I argue that Searle is demanding nothing less than a Kuhnian-type revolution with respect to how scientists should study consciousness given his rejection of the subject-object distinction and affirmation of mental causation. As part of my analysis, I reveal that Searle embraces a version of emergentism that is in tension, not only with his own account, but also with some of the theoretical (...)
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  36. Thinking of the ancient Greek philosophers — is the key to creation of modern philosophy as a strict cumulative science.Yuriy Rotenfeld - manuscript
    A new method of adult and children mental development is investigated – the trilogy of mind, which basic operation is the logic operation of comparison. This method was created considering Aristotle's understanding of philosophy as “the science about the first reasons and origins” of cognition, the beginning of presocratic cognition of the surrounding world. This new method is an effective mean of mental thinking development that is oriented at the understanding of natural and social processes with the help of (...)
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  37. What is Scientific Progress? Lessons from Scientific Practice.Moti Mizrahi - 2013 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 44 (2):375-390.
    Alexander Bird argues for an epistemic account of scientific progress, whereas Darrell Rowbottom argues for a semantic account. Both appeal to intuitions about hypothetical cases in support of their accounts. Since the methodological significance of such appeals to intuition is unclear, I think that a new approach might be fruitful at this stage in the debate. So I propose to abandon appeals to intuition and look at scientific practice instead. I discuss two cases that illustrate the way in (...)
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  38. Guru Nanak - A Prophet with a Scientific Attitude.Devinder Pal Singh - 2019 - In Jagdish Kaur & Phfc Board of Directors (eds.), Universal Relevance of Guru Nanak's Teachings. Punjabi Heritage Foundation of Canada. pp. 331-343.
    Scientific attitude represents a spirit of critical and creative inquiry. It involves the process of logical reasoning. The ability to think objectively, logically and analytically leads to the development of a scientific attitude. It is a way of looking at things, the capacity that rids an individual of all kinds of prejudice and to look at the object in its entirety and its objectivity. Having a scientific attitude consists of being willing to accept only carefully and objectively (...)
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  39. Hempel on Scientific Understanding.Xingming Hu - 2021 - Studies in History and Philosophy of Science Part A 88 (8):164-171.
    Hempel seems to hold the following three views: (H1) Understanding is pragmatic/relativistic: Whether one understands why X happened in terms of Explanation E depends on one's beliefs and cognitive abilities; (H2) Whether a scientific explanation is good, just like whether a mathematical proof is good, is a nonpragmatic and objective issue independent of the beliefs or cognitive abilities of individuals; (H3) The goal of scientific explanation is understanding: A good scientific explanation is the one that provides understanding. (...)
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  40. Perception and Discovery: An Introduction to Scientific Inquiry (2nd edition).Matthew D. Lund (ed.) - 2018 - Cham: Springer.
    Norwood Russell Hanson was one of the most important philosophers of science of the post-war period. Hanson brought Wittgensteinian ordinary language philosophy to bear on the concepts of science, and his treatments of observation, discovery, and the theory-ladenness of scientific facts remain central to the philosophy of science. Additionally, Hanson was one of philosophy’s great personalities, and his sense of humor and charm come through fully in the pages of Perception and Discovery. -/- Perception and Discovery, originally published in (...)
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  41. The linguistic - cultural nature of scientific truth.Damian Islas - 2012 - Skepsis: A Journal for Philosophy and Interdisciplinary Research (3):80-88.
    While we typically think of culture as defined by geography or ethnicity (e.g., American culture, Mayan culture), the term also applies to the practices and expectations of smaller groups of people. Though embedded in the larger culture surrounding them, such subcultures have their own sets of rules like those that scientists do. Philosophy of science has as its main object of studio the scientific activity. A way in which we have tried to explain these scientific practices is from (...)
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  42.  85
    Eutopian Life: a Thinking Life-Science for a Rooted Dwelling on our Home-Earth.Agustín Ostachuk - 2024 - Buenos Aires: Evolutio Press.
    We live longing for a utopia. However, we live in increasingly dystopian times. Whenever we imagine possible futures, a continuity of human progress in the direction of greater scientific-technological development comes to mind. We are completely certain that the reason that brought us current modern science and technology will lead us to this utopia, to a promising future. There is an association as intimate as it is indubitable between future, progress, technoscience and utopia. Isn't it time to question this (...)
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  43. Stop calculating: it is about time to start thinking!Vasil Penchev - 2024 - Metaphysics eJournal (Elsevier: SSRN) 17 (14):1-61.
    The paper is a partly provocative essay edited as a humanitarian study in philosophy of science and social philosophy, reflecting on the practical, “anti-metaphysical” turn taken place since the 20th century and continuing until now. The article advocates that it is about time it to be overcome because it is the main obstacle for the further development of exact and natural sciences including mathematics therefore restoring the unity of philosophy and sciences in the dawn of modern science when the great (...)
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  44. How scientific research changes the Vietnamese higher education landscape: Evidence from social sciences and humanities between 2008 and 2019.Thi-Huyen-Trang Nguyen, Trung Tran, The-Tung Dau, Thi-Song-Ha Nguyen, Thanh-Hung Nguyen & Manh-Toan Ho - 2020 - F1000Research 9 (152):1-11.
    Background: In the context of globalization, Vietnamese universities, whose primary function is teaching, there is a need to improve research performance. Methods: Based on SSHPA data, an exclusive database of Vietnamese social sciences and humanities researchers’ productivity, between 2008 and 2019 period, this study analyzes the research output of Vietnamese universities in the field of social sciences and humanities. Results: Vietnamese universities have been steadily producing a high volume of publications in the 2008-2019 period, with a peak of 598 articles (...)
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  45. The Scientific Understanding of Mercy.Bhakti Madhava Puri - 2010 - The Harmonizer.
    The work of harmonizing and integrating the various fields of knowledge is not left to the individual as much as it is already accomplished in and by the Complete Whole. Rather, the individual must become self-forgetful, which is achieved anyhow in the universalizing activity of science. And more than self-forgetful, the individual becomes a self-sacrificing or dedicating unit within the self-realizing Absolute. It is here that entrusting oneself to the intelligence and reason of the True, once it is scientifically realized, (...)
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  46. The Border Between Seeing and Thinking.Ned Block - 2023 - New York, US: OUP USA.
    This book argues that there is a joint in nature between seeing and thinking, perception, and cognition. Perception is constitutively iconic, nonconceptual, and nonpropositional, whereas cognition does not have these properties constitutively. The book does not appeal to “intuitions,” as is common in philosophy, but to empirical evidence, including experiments in neuroscience and psychology. The book argues that cognition affects perception, i.e., that perception is cognitively penetrable, but that this does not impugn the joint in nature. A key part (...)
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  47. Scientific Humility: Scientific Honesty – Hypothesis and Science.Bhakti Madhava Puri - 2009 - Darwin Under Siege.
    It is not that scientists make an hypothesis first, and then try to find the data to fit that hypothesis. Rather, the process is first observation, then an hypothes is made to describe the data, then conclude that the data has been described by the hypothesis. But this is not an explanation of the phenomenon. It is merely a description of the data in different terms, usually mathematics. It is essentially a tautology. Thus to observe various points and connect them (...)
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  48. The Noetic Account of Scientific Progress and the Factivity of Understanding.Fabio Sterpetti - 2018 - In David Danks & Emiliano Ippoliti (eds.), Building Theories: Heuristics and Hypotheses in Sciences. Cham: Springer International Publishing.
    There are three main accounts of scientific progress: 1) the epistemic account, according to which an episode in science constitutes progress when there is an increase in knowledge; 2) the semantic account, according to which progress is made when the number of truths increases; 3) the problem-solving account, according to which progress is made when the number of problems that we are able to solve increases. Each of these accounts has received several criticisms in the last decades. Nevertheless, some (...)
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  49. Scientific Knowledge in Aristotle’s Biology.Barbara Botter - 2015 - ATINER'S Conference Paper Series:1-15.
    Aristotle was the first thinker to articulate a taxonomy of scientific knowledge, which he set out in Posterior Analytics. Furthermore, the “special sciences”, i.e., biology, zoology and the natural sciences in general, originated with Aristotle. A classical question is whether the mathematical axiomatic method proposed by Aristotle in the Analytics is independent of the special sciences. If so, Aristotle would have been unable to match the natural sciences with the scientific patterns he established in the Analytics. In this (...)
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  50. The Distribution of Ethical Labor in the Scientific Community.Vincenzo Politi & Alexei Grinbaum - 2020 - Journal of Responsible Innovation 7:263-279.
    To believe that every single scientist ought to be individually engaged in ethical thinking in order for science to be responsible at a collective level may be too demanding, if not plainly unrealistic. In fact, ethical labor is typically distributed across different kinds of scientists within the scientific community. Based on the empirical data collected within the Horizon 2020 ‘RRI-Practice’ project, we propose a classification of the members of the scientific community depending on their engagement in this (...)
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