Results for 'Wissenschaftlichkeits-anspruch Claim of Scientificity'

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  1. Physics and Magic. Disenchanting Nature.Gregor Schiemann - 2007 - In J. Mildorf, U. Seeber & M. Windisch (eds.), Magic, Science, Technology and Literature. Lit.
    A widespread view of the natural sciences holds that their historical development was accompanied by a constantly widening gap between them and magic. Originally closely bound up with magic, the sciences are supposed to have distanced themselves from it in a long-drawn-out process, until they attained their present magic-free form. I would like, in this essay, to discuss some arguments in support of this plausible view. To this end, I shall begin with a definition of magical and scientific concepts of (...)
     
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  2.  40
    Second-Order Assessment of Scientific Expert Claims and Sharing Epistemic Burdens in Science Communication.George Kwasi Barimah - forthcoming - Episteme:1-17.
    When laypersons are presented with scientific information which seeks to modify their way of life, they are expected to believe, suspend belief, or reject it. Second-order assessment of scientific experts helps laypersons to make an informed decision in such situations. This is an assessment of the trustworthiness of the person making the scientific claim. In this paper I challenge the optimistic view of Anderson, regarding the ease with which laypersons can perform second-order assessment of experts, by pointing out some (...)
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  3.  5
    The scientific claims of British child guidance, 1918–45.John Stewart - 2009 - British Journal for the History of Science 42 (3):407-432.
    This article examines the British child guidance movement's claim to scientific status and what it sought to gain by the wider acceptance of such a claim. The period covered is from the movement's origins in the 1920s to the end of the Second World War, by which point it had been incorporated into the welfare state. This was also an era when science commanded high intellectual and cultural status. Child guidance was a form of psychiatric medicine that addressed (...)
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  4.  16
    The truth of scientific claims.Edward MacKinnon - 1982 - Philosophy of Science 49 (3):437-462.
    The idea that science aspires to and routinely achieves truths about the world has been challenged in recent writings. Rather than beginning with a theory of scientific development, or of scientific explanation, we begin with a consideration of truth claims in ordinary discourse, particularly with Davidson's truth-functional semantics. Next we consider the way in which some framework features of ordinary language discourse are extended to and modified in scientific discourse. Two areas are treated in more detail: quantum theory, and the (...)
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  5.  72
    Criminalization of scientific misconduct.William Bülow & Gert Helgesson - 2019 - Medicine, Health Care and Philosophy 22 (2):245-252.
    This paper discusses the criminalization of scientific misconduct, as discussed and defended in the bioethics literature. In doing so it argues against the claim that fabrication, falsification and plagiarism (FFP) together identify the most serious forms of misconduct, which hence ought to be criminalized, whereas other forms of misconduct should not. Drawing the line strictly at FFP is problematic both in terms of what is included and what is excluded. It is also argued that the criminalization of scientific misconduct, (...)
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  6.  32
    Emergence of scientific understanding in real-time ecological research practice.Luana Poliseli - 2020 - History and Philosophy of the Life Sciences 42 (4):1-25.
    Scientific understanding as a subject of inquiry has become widely discussed in philosophy of science and is often addressed through case studies from history of science. Even though these historical reconstructions engage with details of scientific practice, they usually provide only limited information about the gradual formation of understanding in ongoing processes of model and theory construction. Based on a qualitative ethnographic study of an ecological research project, this article shifts attention from understanding in the context of historical case studies (...)
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  7. The Professionalisation of Science – Claim and Refusal: Discipline Building and Ideals of Scientific Autonomy in the Growth of Prehistoric Archaeology. The Case of Georges Laplace's Group of Typologie Analytique, 1950s–1990s.Sébastien Plutniak - 2017 - Organon 49:105-154.
    The majority of analyses investigating the professionalisation of scientific domains tend to assume the linear and general features of this transformation. These studies focus on the shift from a non-professionalised state to a professionalised state. This dual approach, however, crucially lacks some other aspects of the process of professionalisation. This issue is discussed within the context of the growth of prehistoric archaeology in France from the 1940s, by observing scientific societies, national research organisations and their social networks. Looking at the (...)
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  8. Balancing Altruism And Selfishness: Evolutionary Theory And The Foundation Of Morality.Margaret Gruter & Roger Masters - 1996 - Jahrbuch für Recht Und Ethik 4.
    Although the field of bioethics usually emphasizes ethical dilemmas arising from contemporary biomedical research, at another level the foundation of ethical judgments can be explored in the light of evolutionary biology. Two scientific approaches illuminate the relationships between human nature, social environments, and standards of ethical judgment: first, ethology and the observational study of nonhuman primates; second, evolutionary theory and new developments in the understanding of natural selection. Ethology shows that humans, like the species most closely related to us, are (...)
     
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  9.  36
    Dimensions of scientific law.Sandra D. Mitchell - 2000 - Philosophy of Science 67 (2):242-265.
    Biological knowledge does not fit the image of science that philosophers have developed. Many argue that biology has no laws. Here I criticize standard normative accounts of law and defend an alternative, pragmatic approach. I argue that a multidimensional conceptual framework should replace the standard dichotomous law/ accident distinction in order to display important differences in the kinds of causal structure found in nature and the corresponding scientific representations of those structures. To this end I explore the dimensions of stability, (...)
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  10. Aristotle’s Definition of Scientific Knowledge.Lucas Angioni - 2016 - History of Philosophy & Logical Analysis 19 (1):79-104.
    In Posterior Analytics 71b9 12, we find Aristotle’s definition of scientific knowledge. The definiens is taken to have only two informative parts: scientific knowledge must be knowledge of the cause and its object must be necessary. However, there is also a contrast between the definiendum and a sophistic way of knowing, which is marked by the expression “kata sumbebekos”. Not much attention has been paid to this contrast. In this paper, I discuss Aristotle’s definition paying due attention to this contrast (...)
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  11.  8
    The perceived credibility of scientific claims, paranormal phenomena, and miracles among primary teacher students: A comparative study.Tapio Keranto - 2001 - Science & Education 10 (5):493-511.
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  12.  21
    Depth: An Account of Scientific Explanation.Michael Strevens - 2008 - Cambridge, Mass.: Harvard University Press.
    Approaches to explanation -- Causal and explanatory relevance -- The kairetic account of /D making -- The kairetic account of explanation -- Extending the kairetic account -- Event explanation and causal claims -- Regularity explanation -- Abstraction in regularity explanation -- Approaches to probabilistic explanation -- Kairetic explanation of frequencies -- Kairetic explanation of single outcomes -- Looking outward -- Looking inward.
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  13. 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 authors (...)
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  14.  4
    Kuhn: philosopher of scientific revolutions.W. W. Sharrock - 2002 - Malden, MA: Polity. Edited by Rupert J. Read.
    Thomas Kuhn's shadow hangs over almost every field of intellectual inquiry. His book The Structure of Scientific Revolutions has become a modern classic. His influence on philosophy, social science, historiography, feminism, theology, and (of course) the natural sciences themselves is unparalleled. His epoch-making concepts of 'new paradigm' and 'scientific revolution' make him probably the most influential scholar of the twentieth century. Sharrock and Read take the reader through Kuhn's work in a careful and accessible way, emphasizing Kuhn's detailed studies of (...)
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  15.  16
    Normativity of Scientific Laws : Aspects of Implicit Normativity.Ave Mets - 2018 - Problemos 94:49.
    [full article, abstract in English; only abstract in Lithuanian] In Normativity of Scientific Laws explicit and implicit normativities were discerned and it was shown, following Joseph Rouse, that scientific laws implicitly harbour what Alchourrón and Bulygin imply to be the core of normativity. Here I develop this claim by discerning six aspects of implicit normativity in scientific laws: general and special conceptual normativity, concerning analytical thinking and special scientific terminologies; theoretical and material epistemic normativity, concerning mathematical and experimental accountability (...)
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  16.  4
    Science and Values: Are Value Judgments Always Irrelevant to the Justification of Scientific Claims?Kristen Intemann - 2001 - Philosophy of Science 68 (S3):S506-S518.
    Several feminist theorists have claimed that feminist values ought to influence theory choice. Susan Haack has argued that this is implausible because normative claims about what ought to be the case can never provide justification for descriptive claims. I argue against one of the premises of Haack's argument. Furthermore, I attempt to show that the most promising defense of this premise would cast doubt on a second premise of Haack's argument. My aim is to open up the possibility that value (...)
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  17. The Modal Basis of Scientific Modelling.Tuomas E. Tahko - 2023 - Synthese 201 (75):1-16.
    The practice of scientific modelling often resorts to hypothetical, false, idealised, targetless, partial, generalised, and other types of modelling that appear to have at least partially non-actual targets. In this paper, I will argue that we can avoid a commitment to non-actual targets by sketching a framework where models are understood as having networks of possibilities as their targets. This raises a further question: what are the truthmakers for the modal claims that we can derive from models? I propose that (...)
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  18.  8
    Territorial Claims of Armenia Against Azerbaijan and Karabagh Issue in Regional Political Processes (June-October, 1918).Vasif Gafarov - 2024 - Metafizika 7 (1):10-40.
    This article deals with the territorial claims of Armenia against Azerbaijan and the diplomatic struggle among related parties after the establishment of independent states in the South Caucasus. Azerbaijani and Armenian delegations at the Istanbul conference on Armenia's territorial claims, and at the same time, details of the negotiations between the diplomatic representatives of the two countries in Tbilisi have been illustrated according to the documents of the archives of Azerbaijan and Turkey and materials from the Istanbul press in 1918. (...)
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  19.  6
    The Epistemic Integrity of Scientific Research.Jan Winter & Laszlo Kosolosky - 2013 - Science and Engineering Ethics 19 (3):757-774.
    We live in a world in which scientific expertise and its epistemic authority become more important. On the other hand, the financial interests in research, which could potentially corrupt science, are increasing. Due to these two tendencies, a concern for the integrity of scientific research becomes increasingly vital. This concern is, however, hollow if we do not have a clear account of research integrity. Therefore, it is important that we explicate this concept. Following Rudolf Carnap’s characterization of the task of (...)
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  20. 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 scientific (...)
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  21. Public Reason Liberalism and the Certification of Scientific Claims.Jason Tyndal - 2019 - Social Epistemology Review and Reply Collective 11 (8):8-14.
  22.  10
    ‘Holding’ and ‘endorsing’ claims in the course of scientific activities.Hugh Lacey - 2015 - Studies in History and Philosophy of Science Part A 53:89-95.
  23.  39
    Formal Models of Scientific Inquiry in a Social Context: An Introduction.Dunja Šešelja, Christian Straßer & AnneMarie Borg - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 51 (2):211-217.
    Formal models of scientific inquiry, aimed at capturing socio-epistemic aspects underlying the process of scientific research, have become an important method in formal social epistemology and philosophy of science. In this introduction to the special issue we provide a historical overview of the development of formal models of this kind and analyze their methodological contributions to discussions in philosophy of science. In particular, we show that their significance consists in different forms of ‘methodological iteration’ whereby the models initiate new lines (...)
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  24.  63
    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 the actual (...)
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  25.  24
    Science and values: Are value judgments always irrelevant to the justification of scientific claims?Kristen Intemann - 2001 - Proceedings of the Philosophy of Science Association 2001 (3):S506-.
    Several feminist theorists have claimed that feminist values ought to influence theory choice. Susan Haack has argued that this is implausible because normative claims about what ought to be the case can never provide justification for descriptive claims. I argue against one of the premises of Haack's argument. Furthermore, I attempt to show that the most promising defense of this premise would cast doubt on a second premise of Haack's argument. My aim is to open up the possibility that value (...)
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  26.  5
    Representation and Similarity: Suárez on Necessary and Sufficient Conditions of Scientific Representation.Michael Poznic - 2016 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 47 (2):331-347.
    The notion of scientific representation plays a central role in current debates on modeling in the sciences. One or maybe the major epistemic virtue of successful models is their capacity to adequately represent specific phenomena or target systems. According to similarity views of scientific representation, models should be similar to their corresponding targets in order to represent them. In this paper, Suárez’s arguments against similarity views of representation will be scrutinized. The upshot is that the intuition that scientific representation involves (...)
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  27.  63
    QBism and the limits of scientific realism.David Glick - 2021 - European Journal for Philosophy of Science 11 (2):1-19.
    QBism is an agent-centered interpretation of quantum theory. It rejects the notion that quantum theory provides a God’s eye description of reality and claims instead that it imposes constraints on agents’ subjective degrees of belief. QBism’s emphasis on subjective belief has led critics to dismiss it as antirealism or instrumentalism, or even, idealism or solipsism. The aim of this paper is to consider the relation of QBism to scientific realism. I argue that while QBism is an unhappy fit with a (...)
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  28.  12
    Two Notions of Scientific Justification.Matthias Adam - 2007 - Synthese 158 (1):93 - 108.
    Scientific claims can be assessed epistemically in either of two ways: according to scientific standards, or by means of philosophical arguments such as the no-miracle argument in favor of scientific realism. This paper investigates the basis of this duality of epistemic assessments. It is claimed that the duality rests on two different notions of epistemic justification that are well-known from the debate on internalism and externalism in general epistemology: a deontological and an alethic notion. By discussing the conditions for the (...)
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  29. Culture and Conceptualisation of Scientific Terms: An Analysis of the Concepts "Weight" and "Mass" in Arabic and French.Hicham Lahlou & Hajar Rahim - 2016 - Kemanusiaan 23 (Supp. 2):19-37.
    Studies on difficulties in understanding scientific terms have shown that the problem is more serious among non-Western learners. The main reasons for this are the learners' pre-existing knowledge of scientific terms, their native language incommensurability with Western languages, and the polysemy of the words used to denote scientific concepts. The current study is an analysis of the conceptualisation of scientific concepts in two culturally different languages, i.e. Arabic and French, which represent a non-Western language and a Western language respectively. Physics (...)
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  30.  20
    Progressing Bird’s account of scientific progress.Kevin McCain - 2023 - Asian Journal of Philosophy 2 (1):1-6.
    One of the central claims of Alexander Bird’s book Knowing Science is that the concept of knowledge is central to understanding science. In light of this, it is unsurprising that Bird construes scientific progress solely in terms of the accumulation of scientific knowledge. Although his account of scientific progress is itself promising, there is an underlying tension between Bird’s support for the knowledge-centric account of scientific progress and his case against rival accounts of scientific progress. Specifically, Bird criticizes semantic accounts (...)
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  31.  2
    On the Realist Theory of Scientific Progress.Ilkka Niiniluoto - 1983 - der 16. Weltkongress Für Philosophie 2:938-945.
    This paper discusses the 'realist' theory of scientific progress which claims that science makes progress so far as it succeeds in gaining true or highly truthlike information about the reality. Some difficulties of this theory are pointed out by considering Peirce's view of truth as the limit of inquiry. A parallelism is suggested between various theories of physical probability and epistemological views about scientific knowledge.
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  32.  7
    The logic of scientific discovery in critical realist social scientific research.Jan Wuisman - 2005 - Journal of Critical Realism 4 (2):366-394.
    Critical realism claims to bring a significant improvement to social science, especially in comparison with empiricist and interpretive approaches. So far, however, it has fallen short of the high expectations it raises. Critical realist arguments are convincing on the philosophical or meta-theoretical level but the contributions of critical realism to social science in terms of research activities at the field level are less clear. Nonetheless, there is no way back. Moving forward requires that the practice of doing social scientific research (...)
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  33.  6
    Ten Types of Scientific Progress.Andre Kukla - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (1):457-466.
    In the opening chapters of Progress and Its Problems, Laudan presents a taxonomy of scientific accomplishments that has become very well-known among philosophers of science (Laudan 1977). I wish to point out some important omissions in this taxonomy and to recommend an alternative scheme. I believe that the distinctions I have drawn among scientific tasks are philosophically more interesting than Laudan’s. But I am not prepared to defend this opinion in detail. My chief claim is that the new taxonomy (...)
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  34.  37
    Three Tales of Scientific Success.Michela Massimi - 2016 - Philosophy of Science 83 (5):757-767.
    Success-to-truth inferences have been the realist stronghold for a long time. Scientific success is the parameter by which realists claim to discern approximately true theories from false ones. But scientific success needs to be probed a bit deeper. In this article, I tell three tales of scientific success, by considering in turn success from nowhere, success from here now, and success from within. I argue for a suitable version of success from within that can do justice to the historically (...)
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  35.  12
    Kuhn: Philosopher of Scientific Revolution.Wes Sharrock & Rupert Read - 2002 - Malden, MA: Polity. Edited by Rupert J. Read.
    Thomas Kuhn's shadow hangs over almost every field of intellectual inquiry. His book The Structure of Scientific Revolutions has become a modern classic. His influence on philosophy, social science, historiography, feminism, theology, and (of course) the natural sciences themselves is unparalleled. His epoch-making concepts of ‘new paradigm’ and ‘scientific revolution’ make him probably the most influential scholar of the twentieth century. -/- Sharrock and Read take the reader through Kuhn's work in a careful and accessible way, emphasizing Kuhn's detailed studies (...)
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  36.  5
    Hierarchy of scientific consensus and the flow of dissensus over time.Kyung-Man Kim - 1996 - Philosophy of the Social Sciences 26 (1):3-25.
    During the last few years, several sociological accounts of scientific consensus appeared in which a radically skeptical view of cognitive consensus in science was advocated. Challenging the traditional realist conception of scientific consensus as a sui generis social fact, the radical skeptics claim to have shown that the traditional historical sociologist's supposedly definitive account of scientific consensus is only a linguistic chimera that easily can be deconstructed by the application of different interpretive schema to the given data. I will (...)
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  37.  41
    Kuhn's Intellectual Path: Charting the Structure of Scientific Revolutions.K. Brad Wray - 2021 - Cambridge: Cambridge University Press.
    Thomas Kuhn’s The Structure of Scientific Revolutions offers an insightful and engaging theory of science that speaks to scholars across many disciplines. Though initially widely misunderstood, it had a profound impact on the way intellectuals and educated laypeople thought about science. K. Brad Wray traces the influences on Kuhn as he wrote Structure, including his ‘Aristotle epiphany’, his interactions, and his studies of the history of chemistry. Wray then considers the impact of Structure on the social sciences, on the history (...)
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  38.  30
    The Art of Scientific Metaphors.Susan Haack - 2019 - Revista Portuguesa de Filosofia 75 (4):2049-2066.
    Metaphor has no place in science, some claim; no, others argue, metaphor is crucial to science. Science is a rational enterprise with its own distinctive logical structure; no, it isn’t essentially different from literature, equally a kind of world-making. There is a distinctive metaphorical kind of meaning; no, metaphorical utterances have only their literal meanings, in which they are just plain false. Conspicuous by its absence is the reasonable middle ground Haack will be mapping here. Metaphor is useful, but (...)
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  39. Feyerabend's Reevaluation of Scientific Practice: Quantum Mechanics, Realism and Niels Bohr.Daniel Kuby - 2021 - In Karim Bschir & Jamie Shaw (eds.), Interpreting Feyerabend: Critical Essays. New York, NY: Cambridge University Press. pp. 132-156.
    The aim of this paper is to give an account of the change in Feyerabend's philosophy that made him abandon methodological monism and embrace methodological pluralism. In this paper I offer an explanation in terms of a simple model of 'change of belief through evidence'. My main claim is that the evidence triggering this belief revision can be identified in Feyerabend's technical work in the interpretation of quantum mechanics, in particular his reevaluation of Bohr's contribution to it. This highlights (...)
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  40. Aristotle and the necessity of scientific knowledge.Lucas Angioni - manuscript
    This is a translation, made by myself, of the paper to be published in Portuguese in the journal Discurso, 2020, in honour of the late professor Oswaldo Porchat. I discuss what Aristotle was trying to encode when he said that the object of scientific knowledge is necessary, or that what we know (scientifically) cannot be otherwise etc. The paper is meant as a continuation of previous papers—orientated towards a book on the Posterior Analytics—and thus does not discuss in much detail (...)
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  41.  5
    Über mediale Präsenz und Prominenz DNA-gestützter VergangenheitsforschungAbout Media Presence and Prominence of DNA-Supported Research of the Past.Stefanie Samida - 2020 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 28 (2):181-192.
    ZusammenfassungDie Molekulargenetik bietet seit ein paar Jahren völlig neue Zugänge zur menschlichen Vergangenheit. Das noch junge und sehr dynamische Forschungsfeld der Archäogenetik nimmt für sich in Anspruch, Geschichte schreiben zu können, und zwar über alte DNA. Durch zahlreiche beachtenswerte Veröffentlichungen hat es viel Aufmerksamkeit erzeugt und erfahren – nicht nur im wissenschaftlichen Diskurs, sondern auch in den Medien. Allerdings erfährt die mediale Berichterstattung von der Forschung bisher wenig Beachtung. Auch der Forumsbeitrag kann dieses Desiderat nicht beheben, sucht aber – (...)
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  42.  29
    The aesthetic dimension of scientific discovery: finding the inter-maxillary bone in humans.Jorge L. García - 2020 - History and Philosophy of the Life Sciences 42 (3):1-30.
    This paper examines the points of disagreement between Petrus Camper and J. W. von Goethe regarding the existence of the inter-maxillary bone in humans as the link between man and the rest of nature. This historical case illustrates the fundamental role of aesthetic judgements in scientific discovery. Thus, I shall show how the eighteenth century discovery of the inter-maxillary bone in humans was largely determined by aesthetic factors—specifically, those sets of assumptions and criteria implied in the aesthetic schemata of Camper (...)
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  43.  18
    On Pragmatic Approaches of Scientific Representation – Points of Criticism.Dimitris Kilakos - 2018 - Proceedings of the XXIII World Congress of Philosophy 62:71-74.
    Taking user’s role and features as milestones for an approach on scientific representation has become a growing trend. We shall investigate the implications that pragmatics bring in the relevant debate. Proponents of pragmatic approaches support that questions such as ‘how an object represents another’ or ‘which features of a certain object represent the target of the representation and in what way’ can be answered only within the given context of representation’s use. Thus, attention is drawn to the intentionality of the (...)
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  44.  2
    Science and the Meanings of Truth Studies Introductory to Asking What is Meant Today by Physical Explanation of Nature , by Mechanisms of Cause and Effect, and by a Claim Tjat Scientific Knowledge is True.Martin Johnson - 1946 - Faber & Faber.
  45.  7
    Science and the Meanings of Truth. Studies Introductory to Asking What is Meant Today by Physical Explanation of Nature, by Mechanisms of Cause and Effect, and by a Claim That Scientific Knowledge is True.Charles A. Baylis - 1948 - Journal of Symbolic Logic 13 (3):145-145.
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  46.  98
    The ‘extendedness’ of scientific evidence.Eric Kerr & Axel Gelfert - 2014 - Philosophical Issues 24 (1):253-281.
    In recent years, the idea has been gaining ground that our traditional conceptions of knowledge and cognition are unduly limiting, in that they privilege what goes on inside the ‘skin and skull’ of an individual reasoner. Instead, it has been argued, knowledge and cognition need to be understood as embodied, situated, and extended. Whether these various interrelations and dependencies are ‘merely’ causal, or are in a more fundamental sense constitutive of knowledge and cognition, is as much a matter of controversy (...)
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  47.  10
    A novel defense of scientific realism.Jarrett Leplin - 1997 - New York: Oxford University Press.
    Leplin attempts to reinstate the common sense idea that theoretical knowledge is achievable, indeed that its achievement is part of the means to progress in empirical knowledge. He sketches the genesis of the skeptical position, then introduces his argument for Minimalist Scientific Realism -- the requirement that novel predicitons be explained, and the claim that only realism about scientific theories can explain the importance of novel prediction.
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  48.  9
    The Point of Scientificity, the Fall of the Epistemological Dominos, and the End of the Field of Educational Administration.Fenwick W. English - 2002 - Studies in Philosophy and Education 21 (2):109-136.
    The point of scientificity, or pos,represents a place in history whereeducational administration was founded as ascience. A pos creates a field of memoryand a field of studies. A pos isepistemologically sustained in its claim forscientific status by a line of demarcation orlod. A lod is supported by truthclaims based on various forms ofcorrespondence. As these forms have beeninterrogated and abandoned, correspondence hasgiven way to coherentism and finally to testsof falsification. As falsification has shownto contain serious flaws when compared (...)
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  49.  11
    Why did Kuhn’s S tructure of Scientific Revolutions Cause a Fuss?Brendan Larvor - 2003 - Studies in History and Philosophy of Science Part A 34 (2):369-390.
    After the publication of The structure of scientific revolutions, Kuhn attempted to fend off accusations of extremism by explaining that his allegedly “relativist” theory is little more than the mundane analytical apparatus common to most historians. The appearance of radicalism is due to the novelty of applying this machinery to the history of science. This defence fails, but it provides an important clue. The claim of this paper is that Kuhn inadvertently allowed features of his procedure and experience as (...)
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  50.  4
    On the autonomy of scientific and theological discourses.Igor Nevvazhay - 2017 - Epistemology and Philosophy of Science 53 (3):140-151.
    Author discusses the problem of the relation between scientific and theological discourses. He argues both against the thesis about science and religion as complementary parts as well as against the thesis that they stay in conflict. He defends the position of the strong separation of theology and science. The author considers three fundamental philosophical problems that mark the difference in rational consideration between science and theology: emergence of the world, foundations of belief and knowledge, modes of scientific and religious discourses. (...)
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