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  1. NAVIGATING THROUGH THE PRECAUTIONARY PRINCIPLE(S).Pedro Bravo - 2023 - Kriterion: Journal of Philosophy 64 (155):329-348.
    This paper aims to map the different theoretical options related to the Precautionary Principle (PP). Great part of the literature on it can be systematized by answering to three different questions: is there a basic structure in the PP? If so, in which interpretation of the PP does this structure express itself? Finally, are its damage or knowledge conditions fixed or adjustable? The first question separates realist from non-realist approaches. The second question allows us to discriminate monist, dualist, or pluralist (...)
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  • Intelligent Design and the Nature of Science: Philosophical and Pedagogical Points.Ingo Brigandt - 2013 - In Kostas Kampourakis (ed.), Philosophical Issues in Biology Education. Springer (under contract). pp. 205-238.
    This chapter offers a critique of intelligent design arguments against evolution and a philosophical discussion of the nature of science, drawing several lessons for the teaching of evolution and for science education in general. I discuss why Behe’s irreducible complexity argument fails, and why his portrayal of organismal systems as machines is detrimental to biology education and any under-standing of how organismal evolution is possible. The idea that the evolution of complex organismal features is too unlikely to have occurred by (...)
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  • Having Science in View: General Philosophy of Science and its Significance.Stathis Psillos - 2016 - In Paul Humphreys (ed.), The Oxford Handbook of Philosophy of Science. Oxford University Press USA.
    The relatively recent trend seems to be to move away from General Philosophy of Science and towards the philosophies of the individual sciences and to relocate whatever content GPoS is supposed to have to the philosophies of the sciences. I argue that scepticism or pessimism about the prospects of GPoS is unwarranted. I also argue that there can be no philosophies of the various sciences without GPoS. Defending these two claims is the main target of this chapter. I will show, (...)
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  • Systematicity and the Continuity Thesis.K. Brad Wray - 2019 - Synthese 196 (3):819-832.
    Hoyningen-Huene develops an account of what science is, distinguishing it from common sense. According to Hoyningen-Huene, the key distinguishing feature is that science is more systematic. He identifies nine ways in which science is more systematic than common sense. I compare Hoyningen-Huene’s view to a view I refer to as the “Continuity Thesis.” The Continuity Thesis states that scientific knowledge is just an extension of common sense. This thesis is associated with Quine, Planck, and others. I argue that Hoyningen-Huene ultimately (...)
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  • Medicine as science. Systematicity and demarcation.Somogy Varga - 2020 - Synthese 22:1-22.
    While medicine is solidly grounded on scientific areas such as biology and chemistry, some argue that it is in its essence not a science at all. With medicine playing a substantial societal role, addressing questions about the scientific nature of medicine is of obvious urgency. This paper takes on such a task and starts by consulting the literature on the “demarcation” problem in the philosophy of science. Learning from failures of earlier approaches, it proposes that we adopt a Deflated Approach, (...)
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  • Inductive Social Metaphysics—A Defence of Inference to the Best Explanation in the Metaphysics of Social Reality: Comments on Katherine Hawley.Oliver R. Scholz - 2018 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 49 (2):199-210.
    How is metaphysics related to the empirical sciences? Should metaphysics in general be guided by the sources, methods and results of the sciences? And what about the special case of the metaphysics of the social world: should it likewise be guided by the sources, methods and results of the social sciences? In her paper “Social Science as a Guide to Social Metaphysics?”, K. Hawley raises the question: If we are sympathetic to the project of naturalising metaphysics, how should we approach (...)
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  • The Problem of Bildung and the Basic Structure of Bildungstheorie.Thomas Rucker & Eric Dan Gerónimo - 2017 - Studies in Philosophy and Education 36 (5):569-584.
    In this article, an attempt is made to introduce a systematization of the loosely connected group of authors called Bildungstheorie. This ought to not only be of significance for German-speaking educational science, for the concept of Bildung is also increasingly used internationally for the formulation and development of pedagogical issues. It is proposed that the concept of complexity could be suitable for bringing attention to common presuppositions in the theoretical dealing with the problem of Bildung. The thesis is that Bildung (...)
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  • Systematicity Without Epistemic Warrant?Stathis Psillos - 2018 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 49 (1):127-135.
    In his latest book, Hoyningen-Huene develops a theory of the ‘nature of science’ which distinguishes science from ‘other forms of knowledge’ on the basis that science has a higher degree of systematicity than them. He analyses systematicity along nine dimensions. I argue that Hoyningen-Huene fails to offer a cogent account of the nature of science and that the chief weakness of his view is that he leaves out of the picture the whole issue of the epistemic warrant for scientific theories (...)
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  • Guest editor’s introduction.Vincenzo Politi - 2019 - Theoria. An International Journal for Theory, History and Foundations of Science 34 (2):167.
  • Systematicity is necessary but not sufficient: on the problem of facsimile science.Naomi Oreskes - 2019 - Synthese 196 (3):881-905.
    Paul Hoyningen-Huene argues that what makes scientific knowledge special is its systematic character, and that this can be used to solve the demarcation problem. He labels this STDC: “Systematicity Theory’s Demarcation Criterion.” This paper argues that STDC fails, because there are areas of intellectual activity that are highly systematic, but that the great majority of scientists and historians and philosophers of science do not accept as scientific. These include homepathy, creationism, and climate change denial. I designate these activities “facsimile sciences” (...)
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  • Why homoeopathy is pseudoscience.Nikil Mukerji & Edzard Ernst - 2022 - Synthese 200 (5):1-29.
    Homoeopathy is commonly recognised as pseudoscience. However, there is, to date, no systematic discussion that seeks to establish this view. In this paper, we try to fill this gap. We explain the nature of homoeopathy, discuss the notion of pseudoscience, and provide illustrative examples from the literature indicating why homoeopathy fits the bill. Our argument contains a conceptual and an empirical part. In the conceptual part, we introduce the premise that a doctrine qualifies as a pseudoscience if, firstly, its proponents (...)
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  • Hypothesis Testing in Scientific Practice: An Empirical Study.Moti Mizrahi - 2020 - International Studies in the Philosophy of Science 33 (1):1-21.
    It is generally accepted among philosophers of science that hypothesis testing is a key methodological feature of science. As far as philosophical theories of confirmation are con...
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  • Representational unification in cognitive science: Is embodied cognition a unifying perspective?Marcin Miłkowski & Przemysław Nowakowski - 2019 - Synthese 199 (Suppl 1):67-88.
    In this paper, we defend a novel, multidimensional account of representational unification, which we distinguish from integration. The dimensions of unity are simplicity, generality and scope, non-monstrosity, and systematization. In our account, unification is a graded property. The account is used to investigate the issue of how research traditions contribute to representational unification, focusing on embodied cognition in cognitive science. Embodied cognition contributes to unification even if it fails to offer a grand unification of cognitive science. The study of this (...)
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  • Systematicity theory meets Socratic scientific realism: the systematic quest for truth.Timothy D. Lyons - 2019 - Synthese 196 (3):833-861.
    Systematicity theory—developed and articulated by Paul Hoyningen-Huene—and scientific realism constitute separate encompassing and empirical accounts of the nature of science. Standard scientific realism asserts the axiological thesis that science seeks truth and the epistemological thesis that we can justifiably believe our successful theories at least approximate that aim. By contrast, questions pertaining to truth are left “outside” systematicity theory’s “intended scope” ; the scientific realism debate is “simply not” its “focus”. However, given the continued centrality of that debate in the (...)
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  • Unification by Fiat: Arrested Development of Predictive Processing.Piotr Litwin & Marcin Miłkowski - 2020 - Cognitive Science 44 (7):e12867.
    Predictive processing (PP) has been repeatedly presented as a unificatory account of perception, action, and cognition. In this paper, we argue that this is premature: As a unifying theory, PP fails to deliver general, simple, homogeneous, and systematic explanations. By examining its current trajectory of development, we conclude that PP remains only loosely connected both to its computational framework and to its hypothetical biological underpinnings, which makes its fundamentals unclear. Instead of offering explanations that refer to the same set of (...)
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  • Teaching the nature of science: An authoritative and insightful but non-empirical approach: Douglas Allchin: Teaching the nature of science: Perspectives and resources. Saint Paul, MN: SHiPS Education Press, 2013, xiii+310pp, $40.00 PB.Kostas Kampourakis - 2014 - Metascience 23 (3):589-592.
    Teaching about Nature of Science (hereafter NOS) has been considered an important element of science education for the past 20 years, at least at the academic level—what teachers actually teach in classrooms is, unfortunately, another story. Generally speaking, science educators have come to a consensus that the history and philosophy of science (hereafter HPS) can provide useful insights, under certain conditions, for this purpose. This does not mean that any HPS teaching necessarily contributes to understanding NOS. However, an appropriate selection (...)
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  • Replies.Paul Hoyningen-Huene - 2019 - Synthese 196 (3):907-928.
    In this article, I reply to the preceding articles by Naomi Oreskes, Chrysostomos Mantzavinos, Brad Wray, Sarah Green, Alexander Bird, and Timothy Lyons. These articles contain a number of objections and suggestions concerning systematicity theory, as developed in my book ystematicity: The Nature of Science.
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  • Science and common sense: perspectives from philosophy and science education.Sara Green - 2019 - Synthese 196 (3):795-818.
    This paper explores the relation between scientific knowledge and common sense intuitions as a complement to Hoyningen-Huene’s account of systematicity. On one hand, Hoyningen-Huene embraces continuity between these in his characterization of scientific knowledge as an extension of everyday knowledge, distinguished by an increase in systematicity. On the other, he argues that scientific knowledge often comes to deviate from common sense as science develops. Specifically, he argues that a departure from common sense is a price we may have to pay (...)
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  • How to balance Balanced Reporting and Reliable Reporting.Mikkel Gerken - 2020 - Philosophical Studies 177 (10):3117-3142.
    The paper draws on philosophy of science to help resolve a tension between two central journalistic ideals: That of resenting diverse viewpoints (Balanced Reporting) and that of presenting the most reliable testimony (Reliable Reporting). While both of these ideals are valuable, they may be in tension. This is particularly so when it comes to scientific testimony and science reporting. Thus, we face a hard question: How should and be balanced in science reporting? The present paper contributes substantive proposals in a (...)
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  • Sequence Data, Phylogenetic Inference, and Implications of Downward Causation.Kirk Fitzhugh - 2016 - Acta Biotheoretica 64 (2):133-160.
    Framing systematics as a field consistent with scientific inquiry entails that inferences of phylogenetic hypotheses have the goal of producing accounts of past causal events that explain differentially shared characters among organisms. Linking observations of characters to inferences occurs by way of why-questions implied by data matrices. Because of their form, why-questions require the use of common-cause theories. Such theories in phylogenetic inferences include natural selection and genetic drift. Selection or drift can explain ‘morphological’ characters but selection cannot be causally (...)
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  • Phylogenetic Inference and the Misplaced Premise of Substitution Rates.Kirk Fitzhugh - 2021 - Acta Biotheoretica 69 (4):799-819.
    Three competing ‘methods’ have been endorsed for inferring phylogenetic hypotheses: parsimony, likelihood, and Bayesianism. The latter two have been claimed superior because they take into account rates of sequence substitution. Can rates of substitution be justified on its own accord in inferences of explanatory hypotheses? Answering this question requires addressing four issues: (1) the aim of scientific inquiry, (2) the nature of why-questions, (3) explanatory hypotheses as answers to why-questions, and (4) acknowledging that neither parsimony, likelihood, nor Bayesianism are inferential (...)
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  • The Multicriterial Approach to the Problem of Demarcation.Damian Fernandez-Beanato - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 51 (3):375-390.
    The problem of demarcating science from nonscience remains unsolved. This article executes an analytical process of elimination of different demarcation proposals put forward since the professionalization of the philosophy of science, explaining why each of those proposals is unsatisfactory or incomplete. Then, it elaborates on how to execute an alternative multicriterial scientific demarcation project put forward by Mahner. This project allows for the demarcation not only of science from non-science and from pseudoscience, but also of different types of sciences and (...)
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  • Identifying Pseudoscience: A Social Process Criterion.Gregory W. Dawes - 2018 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 49 (3):283-298.
    Many philosophers have come to believe there is no single criterion by which one can distinguish between a science and a pseudoscience. But it need not follow that no distinction can be made: a multifactorial account of what constitutes a pseudoscience remains possible. On this view, knowledge-seeking activities fall on a spectrum, with the clearly scientific at one end and the clearly non-scientific at the other. When proponents claim a clearly non-scientific activity to be scientific, it can be described as (...)
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  • Science and Religion in Conflict, Part 1: Preliminaries.R. I. Damper - forthcoming - Foundations of Science:1-38.
    Science and religion have been described as the “two dominant forces in our culture”. As such, the relation between them has been a matter of intense debate, having profound implications for deeper understanding of our place in the universe. One position naturally associated with scientists of a materialistic outlook is that science and religion are contradictory, incompatible worldviews; however, a great deal of recent literature criticises this “conflict thesis” as simple-minded, essentially ignorant of the nature of religion and its philosophical (...)
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  • Science and Religion in Conflict, Part 2: Barbour’s Four Models Revisited.R. I. Damper - forthcoming - Foundations of Science:1-38.
    In the preceding Part 1 of this two-part paper, I set out the background necessary for an understanding of the current status of the debate surrounding the relationship between science and religion. In this second part, I will outline Ian Barbour’s influential four-fold typology of the possible relations, compare it with other similar taxonomies, and justify its choice as the basis for further detailed discussion. Arguments are then given for and against each of Barbour’s four models: conflict, independence, integration and (...)
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  • Introduction: systematicity, the nature of science?Hasok Chang, Simon Lohse & Karim Bschir - 2019 - Synthese 196 (3):761-773.
    Introduction to Synthese SI: Systematicity: The Nature of Science?
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  • Argumentation in Science Education: A Model-based Framework.Florian Böttcher & Anke Meisert - 2011 - Science & Education 20 (2):103-140.
  • In Defense of Levels: Layer Cakes and Guilt by Association.Daniel S. Brooks - 2017 - Biological Theory 12 (3).
    Despite the ubiquity of “levels of organization” in the scientific literature, a nascent “levels skepticism” now claims that the concept of levels is an inherently flawed, misleading, or otherwise inadequate notion for understanding how life scientists produce knowledge about the natural world. However, levels skeptics rely on the maligned “layer-cake” account of levels stemming from Oppenheim and Putnam’s defense of the unity of science for their critical commentary. Recourse to layer-cake levels is understandable, as it is arguably the default conception (...)
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  • Diagnosing Pseudoscience – by Getting Rid of the Demarcation Problem.Maarten Boudry - 2022 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 53 (2):83-101.
    For a long time, philosophers of science have expressed little interest in the so-called demarcation project that occupied the pioneers of their field, and most now concur that terms like “pseudoscience” cannot be defined in any meaningful way. However, recent years have witnessed a revival of philosophical interest in demarcation. In this paper, I argue that, though the demarcation problem of old leads to a dead-end, the concept of pseudoscience is not going away anytime soon, and deserves a fresh look. (...)
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  • The aim of belief and the aim of science.Alexander Bird - 2019 - Theoria. An International Journal for Theory, History and Foundations of Science 34 (2):171.
    I argue that the constitutive aim of belief and the constitutive aim of science are both knowledge. The ‘aim of belief’, understood as the correctness conditions of belief, is to be identified with the product of properly functioning cognitive systems. Science is an institution that is the social functional analogue of a cognitive system, and its aim is the same as that of belief. In both cases it is knowledge rather than true belief that is the product of proper functioning.
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  • Systematicity, knowledge, and bias. How systematicity made clinical medicine a science.Alexander Bird - 2019 - Synthese 196 (3):863-879.
    This paper shows that the history of clinical medicine in the eighteenth century supports Paul Hoyningen-Huene’s thesis that there is a correlation between science and systematicity. For example, James Jurin’s assessment of the safety of variolation as a protection against smallpox adopted a systematic approach to the assessment of interventions in order to eliminate sources of cognitive bias that would compromise inquiry. Clinical medicine thereby became a science. I use this confirming instance to motivate a broader hypothesis, that systematicity is (...)
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  • Repertoires: A post-Kuhnian perspective on scientific change and collaborative research.Rachel A. Ankeny & Sabina Leonelli - 2016 - Studies in History and Philosophy of Science Part A 60:18-28.
  • Philosophy of Scientific Malpractice.Hanne Andersen - 2021 - SATS 22 (2):135-148.
    This paper presents current work in philosophy of science in practice that focusses on practices that are detrimental to the production of scientific knowledge. The paper argues that philosophy of scientific malpractice both provides an epistemological complement to research ethics in understanding scientific misconduct and questionable research practices, and provides a new approach to how training in responsible conduct of research can be implemented.
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  • نظام‌مندی دانش علمی، راهکاری جهت خروج از حباب معرفتی و اتاق بازتاب.Ashouri Kisomi Mohammad Ali & Parvizi Maryam - 2022 - Wisdom and Philosophy 18 (71):23-53.
    حباب معرفتی و اتاق بازتاب دو پدیده دوران پسا-حقیقت هستند که در آن‌ها دانش علمی انکار می‌شود. تای نوین معتقد است این پدیده‌ها دانش علمی را با طرد و بی‌اعتمادی به آن انکار می‌کنند. هدف از پژوهش حاضر این است که راه‌کاری برای تمیز میان دانش علمی و دانش درون این جوامع به دست آورده تا امکان خروج از آن‌ها میسر شود. به این منظور، با استفاده از روش تحلیلی-توصیفی ابتدا به تبیین این دو پدیده و بررسی راه‌کار ارائه‌شده برای (...)
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  • The Unity of Science.Jordi Cat - 2013 - Stanford Encyclopedia of Philosophy.
  • Two Sources of Knowledge: Origin and Generation of Knowledge in Maine de Biran and Henri Bergson.Lauri Myllymaa - 2021 - Dissertation, University of Jyväskylä
    It is important for the theory of knowledge to understand the factors involved in the generation of the capacities of knowledge. In the history of modern philosophy, knowledge is generally held to originate in either one or two sources, and the debates about these sources between philosophers have concerned their existence, or legitimacy. Furthermore, some philosophers have advocated scepticism about the human capacity to understand the origins of knowledge altogether. However, the developmental aspects of knowledge have received relatively little attention (...)
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  • Against border patrols.Mariam Thalos - 2017 - In Maarten Boudry and Massimo Pigliucci (ed.), Science Unlimited? Challenges of Scientism. Chicago: pp. 283–301.
  • Medizin als Wissenschaft - eine wissenschaftstheoretische Analyse.Holger Lyre - 2018 - In Daniela Ringkamp & Héctor Wittwer (eds.), Was ist Medizin? Der Begriff der Medizin und seine ethischen Implikationen. Alber.
    Gegenstand dieses Beitrags ist eine Auseinandersetzung mit der Wissenschaftlichkeit der Medizin. Den Leitfaden der Analyse bildet dabei ein jüngerer Ansatz in der analytischen Wissenschaftstheorie, wonach Systematizität als zentrales Kriterium von Wissenschaft anzusehen ist (Hoyningen-Huene 2013). Ich werde im Detail zeigen, dass die Medizin dieses mehrdimensionale Kriterium insgesamt erfüllt, dass aus der Wissenschaftlichkeit der Medizin aber gleichwohl normative Konsequenzen folgen, die beispielsweise zur Abgrenzung von der Homöopathie und einer kritischen Bewertung des biopsychosozialen Modells führen. Zudem resultieren der Anwendungscharakter der Medizin und (...)
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  • Can Science Investigate the Supernatural? An investigation into the relationship between science, the supernatural and religion.Jonathan Winthrop - unknown
    Throughout the last century there has been much discussion over what it is that makes an activity or a theory 'scientific'. In the philosophy of science, conversation has focused on differentiating legitimate science from so-called 'pseudoscience'. In the broader cultural sphere this topic has received attention in multiple legal debates regarding the status of creationism, where it has been generally agreed that the 'supernatural' nature of the claims involved renders them unscientific. In this thesis I focus upon the latter of (...)
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