Results for 'scientific epistemology'

967 found
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  1. THOMAS KUHN AND SCIENTIFIC EPISTEMOLOGY: CONTRIBUTIONS FOR INERRANCY NOTIONS.Amilcar Groschel - manuscript
    O objetivo deste breve artigo é o estudo da confiabilidade alcançada pela ciência (natural) com o exame da contribuição para este fenômeno encontrada no trabalho de Filósofo da Ciência Thomas Kuhn (1922-1996). Busca-se compreender a contribuição, a partir da construção conceitual proposta por Kuhn em “A Estrutura das Revoluções Científicas”, à noção de que a ciência se movimenta a partir de paradigmas e que o sentido de (in) evolução, nas ciências naturais, sempre possui relevância histórica por se tratar de uma (...)
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  2.  75
    Scientific Progress During Peacetime: Current Epistemological Trends.D. A. Parker - manuscript
    This analytical study explores the nature of scientific progress connected to current philosophical definitions and the role of institutional governance in promoting this progress. This paper examines how public and private initiatives intersect to create a wartime level of scientific progress during peacetime, as promoted in detail by Vannevar Bush, Director of the Office of Scientific Research and Development (OSRD) from 1941-47. This study suggests that the public benefit from the war footing approach to scientific progress (...)
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  3. Attention Deficit Hyperactivity Disorder and Scientific Epistemology.Steven Thurber, William Sheehan & Richards J. Roberts - 2009 - Dialogues in Philosophy, Mental and Neuro Sciences 2 (2):33-39.
    Attention Deficit Hyperactivity Disorder (ADHD) continues to be controversial with arguments for and against its veracity being waged by individuals representing a variety of disciplines from behavioral scientists to philosophers. Our perspective focuses on the epistemological underpinnings of what is now commonly known as ADHD. Its ignominious history and current disputes may stem from a "pessimistic" epistemology, meaning that truth is only the province of persons in authority and power. The authoritative organizations that govern the diagnostic labels and criteria (...)
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  4. Genetic Epistemology and Piaget's Philosophy of Science: Piaget vs. Kuhn on Scientific Progress.Jonathan Y. Tsou - 2006 - Theory and Psychology 16 (2):203-224.
    This paper concerns Jean Piaget's (1896–1980) philosophy of science and, in particular, the picture of scientific development suggested by his theory of genetic epistemology. The aims of the paper are threefold: (1) to examine genetic epistemology as a theory concerning the growth of knowledge both in the individual and in science; (2) to explicate Piaget's view of ‘scientific progress’, which is grounded in his theory of equilibration; and (3) to juxtapose Piaget's notion of progress with Thomas (...)
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  5. Epistemological scientism and the scientific meta-method.Petri Turunen, Ilmari Hirvonen & Ilkka Pättiniemi - 2023 - European Journal for Philosophy of Science 13 (2):1-23.
    This paper argues that the proponents of epistemological scientism must take some stand on scientific methodology. The supporters of scientism cannot simply defer to the social organisation of science because the social processes themselves must meet some methodological criteria. Among such criteria is epistemic evaluability, which demands intersubjective access to reasons. We derive twelve theses outlining some implications of epistemic evaluability. Evaluability can support weak and broad variants of epistemological scientism, which state that sciences, broadly construed, are the best (...)
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  6. Scientific Instruments and Epistemology Engines.Tomáš Dvořák - 2012 - Teorie Vědy / Theory of Science 34 (4):529-540.
    This article outlines the gradually changing attitude towards instruments and materials in the philosophy and historiography of science and confronts contemporary revaluations of the material culture of science with Hans-Jörg Rhein- berger's concept of an experimental system and Don Ihde's notion of an epistemology engine.
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  7. Maxwellian Scientific Revolution: a case study in Kantian epistemology.Rinat M. Nugayev - 2014 - Logos and Episteme 5 (2):183-207.
    It is exhibited that maxwellian electrodynamics grew out of the old pre-maxwellian programmes reconciliation: the electrodynamics of Ampere-Weber, the wave theory of Young-Fresnel and Faraday’s scientific research programme. The programmes’ meeting led to construction of the whole hierarchy of theoretical objects starting from the genuine crossbreeds (the displacement current) and up to usual mongrels. After the displacement current invention the interpenetration of the pre-maxwellian programmes began that marked the beginning of theoretical schemes of optics and electromagnetism real unification. Maxwell’s (...)
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  8. Objectivity, Scientificity, and the Dualist Epistemology of Medicine.Thomas V. Cunningham - 2014 - In P. Huneman (ed.), Classification, Disease, and Evidence. Dordrecht: Springer Science + Business. pp. 01-17.
    This paper considers the view that medicine is both “science” and “art.” It is argued that on this view certain clinical knowledge – of patients’ histories, values, and preferences, and how to integrate them in decision-making – cannot be scientific knowledge. However, by drawing on recent work in philosophy of science it is argued that progress in gaining such knowledge has been achieved by the accumulation of what should be understood as “scientific” knowledge. I claim there are varying (...)
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  9. Evolutionary epistemology as a scientific method: a new look upon the units and levels of evolution debate.Nathalie Gontier - 2010 - Theory in Biosciences 2 (129):167-182.
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  10. Epistemological and Ethical Aspects of Time in Scientific Research.Daria Jadreškić - 2020 - Dissertation, Leibniz University Hannover
    This dissertation explores the influence of time constraints on different research practices. The first two parts present case studies, which serve as a basis for discussing the epistemological and ethical implications of temporal limitations in scientific research. Part I is a case study on gravitational wave research, conducted by the LIGO Scientific Collaboration. This exemplifies fundamental research – without immediate societal applications, open-ended in terms of timeline and in terms of research goals. It is based, in part, on (...)
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  11. Scientific Realism and Social Epistemology.Martin Kusch - 2017 - In Juha Saatsi (ed.), The Routledge Handbook of Scientific Realism. New York: Routledge. pp. 261-275.
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  12. Mεtascience: Scientific General Discourse - No. 3 - Metascientific Epistemology.François Maurice - 2024 - Mεtascience: Scientific General Discourse 3:1-312.
    [[THIS IS THE COMPLETE THIRD ISSUE OF MΕTASCIENCE]] -/- This third issue of the journal Mεtascience continues the characterization of this new branch of knowledge that is metascience. If it is new, it is not in a radical sense since Mario Bunge practiced it in an exemplary way, since logical positivists were accused of practicing only a mere metascience, since scientists have always practiced it implicitly, and since some philosophers no longer practice philosophy but rather metascience, but without characterizing it (...)
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  13. Epistemology of Experimental Gravity - Scientific Rationality.Nicolae Sfetcu - manuscript
    The evolution of gravitational tests from an epistemological perspective framed in the concept of rational reconstruction of Imre Lakatos, based on his methodology of research programmes. Unlike other works on the same subject, the evaluated period is very extensive, starting with Newton's natural philosophy and up to the quantum gravity theories of today. In order to explain in a more rational way the complex evolution of the gravity concept of the last century, I propose a natural extension of the methodology (...)
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  14. An Epistemological Inquiry of Scientific Practice.Kehinde Tijani - manuscript
    Abstract: This study explores some theoretical issues in scientific research such as, the nature of experimentation and problems of methodology in scientific practice as well as the question of truth, rationality, objectivity and utility of scientific discoveries. The paper discusses a number of theorizing that have emerged in response to the challenge raised by the above concerns. Epistemological models of science from critical rationalists, like Popper, Kuhn, Feyerabend and the neo-pragmatic methodological orientation of Arthur Fine’s Natural Ontological (...)
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  15. Understanding and scientific progress: lessons from epistemology.Nicholas Emmerson - 2022 - Synthese 200 (1):1-18.
    Contemporary debate surrounding the nature of scientific progress has focused upon the precise role played by justification, with two realist accounts having dominated proceedings. Recently, however, a third realist account has been put forward, one which offers no role for justification at all. According to Finnur Dellsén’s (Stud Hist Philos Sci Part A 56:72–83, 2016) noetic account, science progresses when understanding increases, that is, when scientists grasp how to correctly explain or predict more aspects of the world that they (...)
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  16. Formulational vs. Epistemological Debates Concerning Scientific Realism.Seungbae Park - 2020 - Dialogue 59 (3):479-496.
    A formulational debate is a debate over whether certain definitions of scientific realism and antirealism are useful or useless. By contrast, an epistemological debate is a debate over whether we have sufficient evidence for scientific realism and antirealism defined in a certain manner. I argue that Hilary Putnam’s definitions of scientific realism and antirealism are more useful than Bas van Fraassen’s definitions of scientific realism and constructive empiricism because Putnam’s definitions can generate both formulational and epistemological (...)
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  17. 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'. (...)
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  18. Everyday Scientific Imagination: A Qualitative Study of the Uses, Norms, and Pedagogy of Imagination in Science.Michael Stuart - 2019 - Science & Education 28 (6-7):711-730.
    Imagination is necessary for scientific practice, yet there are no in vivo sociological studies on the ways that imagination is taught, thought of, or evaluated by scientists. This article begins to remedy this by presenting the results of a qualitative study performed on two systems biology laboratories. I found that the more advanced a participant was in their scientific career, the more they valued imagination. Further, positive attitudes toward imagination were primarily due to the perceived role of imagination (...)
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  19. Scientific Realism and the Rationality of Science.Howard Sankey - 2008 - Ashgate.
    Scientific realism is the position that the aim of science is to advance on truth and increase knowledge about observable and unobservable aspects of the mind-independent world which we inhabit. This book articulates and defends that position. In presenting a clear formulation and addressing the major arguments for scientific realism Sankey appeals to philosophers beyond the community of, typically Anglo-American, analytic philosophers of science to appreciate and understand the doctrine. The book emphasizes the epistemological aspects of scientific (...)
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  20. Scientific Collaboration: Do Two Heads Need to Be More than Twice Better than One?Thomas Boyer-Kassem & Cyrille Imbert - 2015 - Philosophy of Science 82 (4):667-688.
    Epistemic accounts of scientific collaboration usually assume that, one way or another, two heads really are more than twice better than one. We show that this hypothesis is unduly strong. We present a deliberately crude model with unfavorable hypotheses. We show that, even then, when the priority rule is applied, large differences in successfulness can emerge from small differences in efficiency, with sometimes increasing marginal returns. We emphasize that success is sensitive to the structure of competing communities. Our results (...)
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  21. The Vienna Circle’s “Scientific World-Conception”: Philosophy of Science in the Political Arena.Donata Romizi - 2012 - Hopos: The Journal of the International Society for the History of Philosophy of Science 2 (2):205-242.
    This article is intended as a contribution to the current debates about the relationship between politics and the philosophy of science in the Vienna Circle. I reconsider this issue by shifting the focus from philosophy of science as theory to philosophy of science as practice. From this perspective I take as a starting point the Vienna Circle’s scientific world-conception and emphasize its practical nature: I reinterpret its tenets as a set of recommendations that express the particular epistemological attitude in (...)
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  22. The Epistemology of Essence.Tuomas Tahko - 2018 - In Alexander Carruth, Sophie C. Gibb & John Heil (eds.), Ontology, Modality, and Mind: Themes From the Metaphysics of E. J. Lowe. Oxford, United Kingdom: Oxford University Press. pp. 93-110.
    The epistemology of essence is a topic that has received relatively little attention, although there are signs that this is changing. The lack of literature engaging directly with the topic is probably partly due to the mystery surrounding the notion of essence itself, and partly due to the sheer difficulty of developing a plausible epistemology. The need for such an account is clear especially for those, like E.J. Lowe, who are committed to a broadly Aristotelian conception of essence, (...)
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  23. Towards a dual process epistemology of imagination.Michael T. Stuart - 2019 - Synthese (2):1-22.
    Sometimes we learn through the use of imagination. The epistemology of imagination asks how this is possible. One barrier to progress on this question has been a lack of agreement on how to characterize imagination; for example, is imagination a mental state, ability, character trait, or cognitive process? This paper argues that we should characterize imagination as a cognitive ability, exercises of which are cognitive processes. Following dual process theories of cognition developed in cognitive science, the set of imaginative (...)
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  24. (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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  25. Extending Similarity-based Epistemology of Modality with Models.Ylwa Sjölin Wirling - 2022 - Ergo: An Open Access Journal of Philosophy 8 (45).
    Empiricist modal epistemologies can be attractive, but are often limited in the range of modal knowledge they manage to secure. In this paper, I argue that one such account – similarity-based modal empiricism – can be extended to also cover justification of many scientifically interesting possibility claims. Drawing on recent work on modelling in the philosophy of science, I suggest that scientific modelling is usefully seen as the creation and investigation of relevantly similar epistemic counterparts of real target systems. (...)
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  26. 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 (...)
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  27. Normative Formal Epistemology as Modelling.Joe Roussos - forthcoming - The British Journal for the Philosophy of Science.
    I argue that normative formal epistemology (NFE) is best understood as modelling, in the sense that this is the reconstruction of its methodology on which NFE is doing best. I focus on Bayesianism and show that it has the characteristics of modelling. But modelling is a scientific enterprise, while NFE is normative. I thus develop an account of normative models on which they are idealised representations put to normative purposes. Normative assumptions, such as the transitivity of comparative credence, (...)
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  28. Semantic Epistemology Redux: Proof and Validity in Quantum Mechanics.Arnold Cusmariu - 2016 - Logos and Episteme 7 (3):287-303.
    Definitions I presented in a previous article as part of a semantic approach in epistemology assumed that the concept of derivability from standard logic held across all mathematical and scientific disciplines. The present article argues that this assumption is not true for quantum mechanics (QM) by showing that concepts of validity applicable to proofs in mathematics and in classical mechanics are inapplicable to proofs in QM. Because semantic epistemology must include this important theory, revision is necessary. The (...)
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  29.  26
    Why Scientific Materialism Is Mistaken.Michael G. Rydman - manuscript
    I make what I believe is a spirited and lively treatment for the necessary abandonment of scientific materialist ontology in light of numerous difficulties that have arisen within the materialist approach when examined in the light of contemporary physics. Every effort is made to ensure that it is aimed at a non-specialized, intelligent audience (except for this abstract). Within this approach every attempt is made to avoid the jargon employed by specialists, which still remaining accurate. I make a case (...)
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  30. A cognitive perspective on scientific realism.Michael Vlerick - 2019 - Philosophical Psychology 32 (8):1157-1178.
    The debate about scientific realism is concerned with the relation between our scientific theories and the world. Scientific realists argue that our best theories or components of those theories correspond to the world. Anti-realists deny such a correspondence. Traditionally, this central issue in the philosophy of science has been approached by focusing on the theories themselves (e.g., by looking at theory change or the underlying experimental context). I propose a relatively unexplored way to approach this old debate. (...)
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  31. Scientific Consensus and Expert Testimony in Courts: Lessons from the Bendectin Litigation.Boaz Miller - 2016 - Foundations of Science 21 (1):15-33.
    A consensus in a scientific community is often used as a resource for making informed public-policy decisions and deciding between rival expert testimonies in legal trials. This paper contains a social-epistemic analysis of the high-profile Bendectin drug controversy, which was decided in the courtroom inter alia by deference to a scientific consensus about the safety of Bendectin. Drawing on my previously developed account of knowledge-based consensus, I argue that the consensus in this case was not knowledge based, hence (...)
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  32. Scientific enquiry and natural kinds: from planets to mallards.P. Magnus - 2012 - New York, NY: Palgrave-Macmillan.
    Some scientific categories seem to correspond to genuine features of the world and are indispensable for successful science in some domain; in short, they are natural kinds. This book gives a general account of what it is to be a natural kind and puts the account to work illuminating numerous specific examples.
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  33. Epistemic Infrastructure for a Scientific Metaphysics.Amanda Bryant - 2021 - Grazer Philosophische Studien 98 (1):27-49.
    A naturalistic impulse has taken speculative analytic metaphysics in its critical sights. Importantly, the claim that it is desirable or requisite to give metaphysics scientific moorings rests on underlying epistemological assumptions or principles. If the naturalistic impulse toward metaphysics is to be well-founded and its prescriptions to have normative force, those assumptions or principles should be spelled out and justified. In short, advocates of naturalized or scientific metaphysics require epistemic infrastructure. This paper begins to supply it. The author (...)
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  34. What is Metascientific Epistemology?François Maurice - 2024 - Mεtascience: Scientific General Discourse 3:22-51.
    Metascientific epistemology differs from any philosophical epistemologies in its aims, objects and methods. Through an examination of Mario Bunge’s epistemology, we will show that the main objective of metascientific epistemology is the development of a unified representation of the epistemic transformations of scientific knowledge through the study of the epistemic operations necessary for its acquisition, creation and validation, that its objects of study are scientific con-structs, and that its methods do not differ from those expected (...)
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  35. Modeling Epistemology: Examples and Analysis in Computational Philosophy of Science.Patrick Grim - 2019 - In A. Del Barrio, C. J. Lynch, F. J. Barros & X. Hu (eds.), IEEE SpringSim Proceedings 2019. IEEE. pp. 1-12.
    What structure of scientific communication and cooperation, between what kinds of investigators, is best positioned to lead us to the truth? Against an outline of standard philosophical characteristics and a recent turn to social epistemology, this paper surveys highlights within two strands of computational philosophy of science that attempt to work toward an answer to this question. Both strands emerge from abstract rational choice theory and the analytic tradition in philosophy of science rather than postmodern sociology of science. (...)
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  36. Two epistemological challenges regarding hypothetical modeling.Peter Tan - 2022 - Synthese 200 (6).
    Sometimes, scientific models are either intended to or plausibly interpreted as representing nonactual but possible targets. Call this “hypothetical modeling”. This paper raises two epistemological challenges concerning hypothetical modeling. To begin with, I observe that given common philosophical assumptions about the scope of objective possibility, hypothetical models are fallible with respect to what is objectively possible. There is thus a need to distinguish between accurate and inaccurate hypothetical modeling. The first epistemological challenge is that no account of the (...) of hypothetical models seems to cohere with the most characteristic function of scientific modeling in general, i.e., surrogative representation. The second epistemological challenge is a version of “reliability challenges” familiar from other areas. There is a challenge to explain how hypothetical models could be a reliable guide to what is possible, given that they are not and cannot be compared against their nonactual targets and updated accordingly. I close with some brief remarks on possible solutions to these challenges. (shrink)
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  37. Epistemology as Engineering?Chase B. Wrenn - 2006 - Theoria 72 (1):60-79.
    According to a common objection to epistemological naturalism, no empirical, scientific theory of knowledge can be normative in the way epistemological theories need to be. In response, such naturalists as W.V. Quine have claimed naturalized epistemology can be normative by emulating engineering disciplines and addressing the relations of causal efficacy between our cognitive means and ends. This paper evaluates that "engineering reply" and finds it a mixed success. Based on consideration of what it might mean to call a (...)
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  38. How can we know whether fish feel pain? Epistemology of the scientific study of fish sentience.Victor Duran-Le Peuch - 2021 - Dissertation,
    I start by defining sentience and giving an analysis of the epistemological problems that plague its scientific study; this consists mainly in justifying that the attribution of sentience is underdetermined by the data. Second I show that as a result of this situation of underdetermination, most of the types of arguments used to infer sentience from the data are inconclusive and lead to a stalemate. Third, I argue that the stalemates arise from a foundationalist epistemology which needlessly leads (...)
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  39. Scientific Conclusions Need Not Be Accurate, Justified, or Believed by their Authors.Haixin Dang & Liam Kofi Bright - 2021 - Synthese 199:8187–8203.
    We argue that the main results of scientific papers may appropriately be published even if they are false, unjustified, and not believed to be true or justified by their author. To defend this claim we draw upon the literature studying the norms of assertion, and consider how they would apply if one attempted to hold claims made in scientific papers to their strictures, as assertions and discovery claims in scientific papers seem naturally analogous. We first use a (...)
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  40. Modal inferences in science: a tale of two epistemologies.Ilmari Hirvonen, Rami Koskinen & Ilkka Pättiniemi - 2021 - Synthese 199 (5-6):13823-13843.
    Recent epistemology of modality has seen a growing trend towards metaphysics-first approaches. Contrastingly, this paper offers a more philosophically modest account of justifying modal claims, focusing on the practices of scientific modal inferences. Two ways of making such inferences are identified and analyzed: actualist-manipulationist modality and relative modality. In AM, what is observed to be or not to be the case in actuality or under manipulations, allows us to make modal inferences. AM-based inferences are fallible, but the same (...)
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  41.  93
    Scientific understanding in biomedical research.Somogy Varga - 2024 - Synthese 204 (2):1-19.
    Motivated by a recent trend that advocates a reassessment of the aim of medical science and clinical practice, this paper investigates the epistemic aims of biomedical research. Drawing on contemporary discussions in epistemology and the philosophy of science, along with a recent study on scurvy, this paper (1) explores the concept of understanding as the aim of scientific inquiry and (2) establishes a framework that will guide the examination of its forms in biomedical research. Using the case of (...)
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  42. The Epistemological Question of the Applicability of Mathematics.Paola Cantù - 2018 - Journal for the History of Analytical Philosophy 6 (3).
    The question of the applicability of mathematics is an epistemological issue that was explicitly raised by Kant, and which has played different roles in the works of neo-Kantian philosophers, before becoming an essential issue in early analytic philosophy. This paper will first distinguish three main issues that are related to the application of mathematics: indispensability arguments that are aimed at justifying mathematics itself; philosophical justifications of the successful application of mathematics to scientific theories; and discussions on the application of (...)
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  43. Big Data, Scientific Research and Philosophy.Giovanni Landi - 2020 - Www.Intelligenzaartificialecomefilosofia.Com.
    What is the epistemological status of Big Data? Is there really place for them in a scientific search for new empirical laws?
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  44. The scientific limits of understanding the (potential) relationship between complex social phenomena: the case of democracy and inequality.Alexander Krauss - 2015 - Journal of Economic Methodology 23 (1):97-109.
    This paper outlines the methodological and empirical limitations of analysing the potential relationship between complex social phenomena such as democracy and inequality. It shows that the means to assess how they may be related is much more limited than recognised in the existing literature that is laden with contradictory hypotheses and findings. Better understanding our scientific limitations in studying this potential relationship is important for research and policy because many leading economists and other social scientists such as Acemoglu and (...)
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  45. Scientific Evidence and the Internalism–Externalism Distinction.Jonathan Egeland - 2022 - Acta Analytica 37 (3):375-395.
    Considerations of scientific evidence are often thought to provide externalism with the dialectical upper hand in the internalism–externalism debate. How so? A couple of reasons are forthcoming in the literature. (1) Williamson (2000) argues that the E = K thesis (in contrast to internalism) provides the best explanation for the fact that scientists appear to argue from premises about true propositions (or facts) that are common knowledge among the members of the scientific community. (2) Kelly (Philosophy Compass, 3 (...)
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  46. Scientific Progress and Democratic Society through the Lens of Scientific Pluralism.Theptawee Chokvasin - 2023 - Suranaree Journal of Social Science 17 (2):Article ID e268392 (pp. 1-15).
    Background and Objectives: In this research article, the researcher addresses the issue of creating public understanding in a democratic society about the progress of science, with an emphasis on pluralism from philosophers of science. The idea that there is only one truth and that there are just natural laws awaiting discovery by scientists has historically made it difficult to explain scientific progress. This belief motivates science to develop theories that explain the unity of science, and it is thought that (...)
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  47. Scientific Disagreements, Fast Science and Higher-Order Evidence.Daniel C. Friedman & Dunja Šešelja - 2023 - Philosophy of Science 90 (4):937-957.
    Scientific disagreements are an important catalyst for scientific progress. But what happens when scientists disagree amidst times of crisis, when we need quick yet reliable policy guidance? In this paper we provide a normative account for how scientists facing disagreement in the context of ‘fast science’ should respond, and how policy makers should evaluate such disagreement. Starting from an argumentative, pragma-dialectic account of scientific controversies, we argue for the importance of ‘higher-order evidence’ (HOE) and we specify desiderata (...)
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  48. The Varieties of Psychedelic Epistemology.Chris Letheby - 2019 - In Nikki Wyrd, David Luke, Aimee Tollan, Cameron Adams & David King (eds.), Psychedelicacies: more food for thought from Breaking Convention. Strange Attractor Press.
    Recent scientific research suggests that altered states of consciousness induced by classic psychedelic drugs can cause durable psychological benefits in both healthy and patient populations. The phenomenon of ‘psychedelic transformation’ has many philosophically provocative aspects, not least of which is the claim commonly made by psychedelic subjects that their transformation is centrally due to some kind of learning or knowledge gain. Can psychedelic experiences really be a source of knowledge? From the vantage point of philosophical materialism or naturalism, a (...)
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  49.  69
    Stoic Epistemology.Ian Hensley - 2020 - In Kelly Arenson (ed.), The Routledge Handbook of Hellenistic Philosophy. Routledge. pp. 137-147.
    This chapter investigates the Stoic understanding of impressions, assent, opinion, scientific knowledge, and cognition. By analyzing these concepts, I describe one major difference between the wise Stoic sage and unwise people: the wise person is capable of scientific knowledge and strong assent, while the rest of us are not. I will also interpret the Stoic account of the cognitive impression and describe several ways that the student of Stoicism might make epistemic progress.
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  50. The Ethics and Epistemology of Trust.J. Adam Carter, and & Mona Simion - 2020 - Internet Encyclopedia of Philosophy.
    Trust is a topic of longstanding philosophical interest. It is indispensable to every kind of coordinated human activity, from sport to scientific research. Even more, trust is necessary for the successful dissemination of knowledge, and by extension, for nearly any form of practical deliberation and planning. Without trust, we could achieve few of our goals and would know very little. Despite trust’s fundamental importance in human life, there is substantial philosophical disagreement about what trust is, and further, how trusting (...)
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