Results for 'Communication in science Philosophy.'

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  1. Challenges for ‘Community’ in Science and Values: Cases from Robotics Research.Charles H. Pence & Daniel J. Hicks - 2023 - Humana.Mente Journal of Philosophical Studies 16 (44):1-32.
    Philosophers of science often make reference — whether tacitly or explicitly — to the notion of a scientific community. Sometimes, such references are useful to make our object of analysis tractable in the philosophy of science. For others, tracking or understanding particular features of the development of science proves to be tied to notions of a scientific community either as a target of theoretical or social intervention. We argue that the structure of contemporary scientific research poses two (...)
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  2.  10
    Hermeneutics and cross-cultural communication in Science : The reception of Western Scientific Ideas in 19th-Century India.Kapil Raj - 1986 - Revue de Synthèse 107 (1-2):107-120.
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  3. Thought Experiments in Science, Philosophy, and the Arts.Melanie Frappier, Letitia Meynell & James Robert Brown (eds.) - 2012 - Routledge.
    From Lucretius throwing a spear beyond the boundary of the universe to Einstein racing against a beam of light, thought experiments stand as a fascinating challenge to the necessity of data in the empirical sciences. Are these experiments, conducted uniquely in our imagination, simply rhetorical devices or communication tools or are they an essential part of scientific practice? This volume surveys the current state of the debate and explores new avenues of research into the epistemology of thought experiments.
     
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  4.  32
    Earth Matters: The Earth Sciences, Philosophy, and the Claims of Community.Robert Frodeman & Victor R. Baker (eds.) - 1999 - Prentice-Hall.
    For courses in Earth Science, Physical Geology, Physical Geography, Earth System Science and Environmental Philosophy. This collection of essays by scholars in both the earth sciences and philosophy discusses the connections between the earth sciences and contemporary culture, and the changing role of the earth sciences in society.
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  5. Extended Cognition in Science Communication.David Ludwig - 2014 - Public Understanding of Science 23 (8):982-995.
    The aim of this article is to propose a methodological externalism that takes knowledge about science to be partly constituted by the environment. My starting point is the debate about extended cognition in contemporary philosophy and cognitive science. Externalists claim that human cognition extends beyond the brain and can be partly constituted by external devices. First, I show that most studies of public knowledge about science are based on an internalist framework that excludes the environment we usually (...)
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  6. Values and Credibility in Science Communication.Janet Michaud & John Turri - 2018 - Logos and Episteme 9 (2):199-214.
    Understanding science requires appreciating the values it presupposes and its social context. Both the values that scientists hold and their social context can affect scientific communication. Philosophers of science have recently begun studying scientific communication, especially as it relates to public policy. Some have proposed “guiding principles for communicating scientific findings” to promote trust and objectivity. This paper contributes to this line of research in a novel way using behavioural experimentation. We report results from three experiments (...)
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  7.  86
    Philosophy of science for science communication in twenty-two questions.Gregor Betz & David Lanius - 2020 - In Annette Leßmöllmann, Marcelo Dascal & Thomas Gloning (eds.), Science Communication. pp. 3-28.
    Philosophy of science attempts to reconstruct science as a rational cognitive enterprise. In doing so, it depicts a normative ideal of knowledge acquisition and does not primarily seek to describe actual scientific practice in an empirically adequate way. A comprehensive picture of what good science consists in may serve as a standard against which we evaluate and criticize actual scientific practices. Such a normative picture may also explain why it is reasonable for us to trust scientists – (...)
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  8.  7
    Communicative Approach to Determining the Role of Personality in Science.O. N. Kubalskyi - 2022 - Anthropological Measurements of Philosophical Research 22:36-48.
    _Purpose__._ This article aims at outlining the socio-communicative prerequisites for the influence of personality on the acquisition of rigorous scientific knowledge. _Theoretical__ basis__._ The communicative foundations of an individual’s activity in general and the functioning of his consciousness in particular were laid by the philosophy of Edmund Husserl, primarily due to his introduction of the concepts of "intersubjectivity" and "lifeworld". From these positions, attempts were made to understand the discussion of Karl Popper and Thomas Kuhn regarding the role of the (...)
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  9. The Transformation of Science Communication in the Age of Social Media.Emanuel Kulczycki - 2013 - Teorie Vědy / Theory of Science 35 (1):3-28.
    The aim of the present article is to discuss several consequences of the Open Science from a perspective of science communication and philosophy of communication. Apart from the purely communicative and philosophical issues, the paper deals with the questions that concern the science popularization process through social media. The article consists of three sections: the first one suggests a definition of science communication and social media, the second examines the transformation of science (...)
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    Incommensurability and Communication: To the Communicative Turn in the Philosophy of Science.Alexander Yu Antonovski - 2022 - Epistemology and Philosophy of Science 59 (4):92-110.
    The article shows that Kuhn's concept of incommensurability emphasizes mainly the objective dimension of communication. To the thesis about the incommensurability of the meanings of scientific concepts in competing paradigms, we oppose the idea of a three-dimensional space of communicative dimensions. We supplement the objective dimension of communication, within which the environmental evolutionary selection of the best knowledge is carried out, with equal social and temporal horizons.
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  11. Recent Themes in the Philosophy of Science: Scientific Realism and Commonsense.S. Clarke & T. D. Lyons (eds.) - 2010 - Dordrecht: Springer.
    Australia and New Zealand boast an active community of scholars working in the field of history, philosophy and social studies of science. Australasian Studies in History and Philosophy of Science aims to provide a distinctive publication outlet for their work. Each volume comprises a group of thematically-connected essays edited by scholars based in Australia or New Zealand with special expertise in that particular area. In each volume, a majority ofthe contributors are from Australia or New Zealand. Contributions from (...)
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  12.  16
    Communication in philosophy.Philip Chapin Jones - 1947 - Philosophy of Science 14 (2):164-170.
    In the ultimate analysis, all philosophical differences are verbal. If by some intellectual X-Ray we could see into the minds of others, and perceive the exact nature of their concepts, we should be force to concede the correctness of their conclusions. The only alternative is that the mental processes—the laws of thought—differ from individual to individual.
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  13.  86
    And who shaves God? Nature and role of paradoxes in ‘science and religion’ communications: ‘A case of foolish virgins’.Markus Ekkehard Locker - 2010 - Empedocles: European Journal for the Philosophy of Communication 1 (2):187-201.
    Speaking of truth inescapably confronts us with paradoxes, i.e., correct deductive propositions like a Cretan claiming that all Cretans lie which (due to negative systemic self-reference) end up as circular contradictions, indeterminable questions, or dilemmas. Faced with the numerous paradoxical statements (apparently 82) found in the Bible, the German Protestant reformer Sebastian Franck (14991542), for example, conceded that any truth of God cannot be found in language but only in the immediate silent experience of God. Likewise, believers in an uncompromising (...)
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  14. Objectivity in Science: New Perspectives From Science and Technology Studies.Flavia Padovani, Alan Richardson & Jonathan Y. Tsou (eds.) - 2015 - Cham: Boston Studies in the Philosophy and History of Science, vol. 310. Springer.
    This highly multidisciplinary collection discusses an increasingly important topic among scholars in science and technology studies: objectivity in science. It features eleven essays on scientific objectivity from a variety of perspectives, including philosophy of science, history of science, and feminist philosophy. Topics addressed in the book include the nature and value of scientific objectivity, the history of objectivity, and objectivity in scientific journals and communities. Taken individually, the essays supply new methodological tools for theorizing what is (...)
  15.  44
    How Much Philosophy in the Philosophy of Science?Anke Büter, Ramiro Glauer & Holger Lyre - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):1-3.
    This supplement serves a double purpose. It presents, on the one hand, a selection of papers devoted to the title question “How much philosophy in the philosophy of science?”. On the other hand, it signalizes the newly established cooperation between the German Society for the Philosophy of Science and the Journal for General Philosophy of Science .The GWP was founded in Hannover in 2011 and had its inaugural conference in March 2013 [for a report on the “GWP.2013” (...)
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  16. The Need for a Revolution in the Philosophy of Science.Nicholas Maxwell - 2002 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 33 (2):381-408.
    There is a need to bring about a revolution in the philosophy of science, interpreted to be both the academic discipline, and the official view of the aims and methods of science upheld by the scientific community. At present both are dominated by the view that in science theories are chosen on the basis of empirical considerations alone, nothing being permanently accepted as a part of scientific knowledge independently of evidence. Biasing choice of theory in the direction (...)
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  17. Connected knowledge: science, philosophy, and education.Alan H. Cromer - 1997 - New York: Oxford University Press.
    When physicist Alan Sokal recently submitted an article to the postmodernist journal Social Text, the periodical's editors were happy to publish it--for here was a respected scientist offering support for the journal's view that science is a subjective, socially constructed discipline. But as Sokal himself soon revealed in Lingua Franca magazine, the essay was a spectacular hoax--filled with scientific gibberish anyone with a basic knowledge of physics should have caught--and the academic world suddenly awoke to the vast gap that (...)
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  18.  66
    Scientific Testimony. Its roles in science and society.Mikkel Gerken - 2022 - Oxford, UK: Oxford University Press.
    Scientific Testimony concerns the roles of scientific testimony in science and society. The book develops a positive alternative to a tradition famously expressed by the slogan of the Royal Society Nullius in verba ("Take nobody's word for it"). This book argues that intra-scientific testimony—i.e., testimony between collaborating scientists—is not in conflict with the spirit of science or an add-on to scientific practice. On the contrary, intra-scientific testimony is a vital part of science. This is illustrated by articulating (...)
  19.  19
    Communicative In-Betweens of Email Communication.Ejvind Hansen - 2009 - Techné: Research in Philosophy and Technology 13 (1):13-26.
    In this paper I seek to deconstruct internet-based communication. I highlight Derrida’s focus on the margins and in-betweens of communication, and relate it to the genre of e-mail. I argue (i) that the silence between the dialogic turns becomes more marked, while (ii) the separation of present and previous statements becomes less marked. The visibility of the silence between the turns (i) can be a resource for increased awareness of how communicative exchanges are shaped by self-arrangements and -presentations. (...)
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  20. Values in Science: Assessing the Case for Mixed Claims.Uwe Peters - forthcoming - Inquiry: An Interdisciplinary Journal of Philosophy.
    Social and medical scientists frequently produce empirical generalizations that involve concepts partly defined by value judgments. These generalizations, which have been called ‘mixed claims’, raise interesting questions. Does the presence of them in science imply that science is value-laden? Is the value-ladenness of mixed claims special compared to other kinds of value-ladenness of science? Do we lose epistemically if we reformulate these claims as conditional statements? And if we want to allow mixed claims in science, do (...)
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  21.  17
    Applied social sciences: philosophy and theology / edited by Georgeta Raţă, Patricia-Luciana Runcan and Michele Marsonet.Georgeta Rață, Patricia-Luciana Runcan & Michele Marscot (eds.) - 2013 - Newcastle upon Tyne, UK: Cambridge Scholars Press.
    This volume, Applied Social Sciences: Philosophy and Theology, provides the reader with an important set of essays related to the two aforementioned fields of study. Aesthetics plays a key role in contemporary philosophy and several authors examine its various aspects, such as the question of identification of works of art; the concept of â oesocial aestheticsâ ; the social therapeutic function that art can have; and the relationships among hermeneutics, aesthetics and communication sciences. Other papers deal with ethical issues, (...)
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  22. Models in Science and in Learning Science: Focusing Scientific Practice on Sense-making.Cynthia Passmore, Julia Svoboda Gouvea & Ronald Giere - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1171-1202.
    The central aim of science is to make sense of the world. To move forward as a community endeavor, sense-making must be systematic and focused. The question then is how do scientists actually experience the sense-making process? In this chapter we examine the “practice turn” in science studies and in particular how as a result of this turn scholars have come to realize that models are the “functional unit” of scientific thought and form the center of the reasoning/sense-making (...)
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  23. A Taxonomy of Transparency in Science.Kevin C. Elliott - 2022 - Canadian Journal of Philosophy 52 (3):342-355.
    Both scientists and philosophers of science have recently emphasized the importance of promoting transparency in science. For scientists, transparency is a way to promote reproducibility, progress, and trust in research. For philosophers of science, transparency can help address the value-ladenness of scientific research in a responsible way. Nevertheless, the concept of transparency is a complex one. Scientists can be transparent about many different things, for many different reasons, on behalf of many different stakeholders. This paper proposes a (...)
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  24.  14
    Beyond Orientalism: Essays on Cross-Cultural Encounter.Fred Reinhard Dallmayr & Packey J. Dee Professor of Philosophy and Political Science Fred Dallmayr - 1996 - SUNY Press.
    Explores some steps toward non-assimilative encounters in the "global village.".
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  25.  32
    Imagination in Science.Luana Poliseli & Charbel El-Hani - 2020 - In Luca Tateo (ed.), A theory of Imagining, Knowing and Understanding. SpringerBriefs in Psychology. pp. 65-84.
    Poliseli, L. & El-Hani, C.N. Imagination in Science. In L. Tateo, A theory of Imagining, Knowing and Understanding, SpringerBriefs in Psychology. -/- This chapter comments on the book from the perspective of the developments in philosophy of science and intercultural communication. It raises a number of issues to be further discussed in order to continue inquiry into Tateo’s approach. It discusses how imaginative processes are engaged in modeling work in science. It also shows how, facing the (...)
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  26.  65
    On serendipity in science: discovery at the intersection of chance and wisdom.Samantha Copeland - 2019 - Synthese 196 (6):2385-2406.
    Abstract‘Serendipity’ is a category used to describe discoveries in science that occur at the intersection of chance and wisdom. In this paper, I argue for understanding serendipity in science as an emergent property of scientific discovery, describing an oblique relationship between the outcome of a discovery process and the intentions that drove it forward. The recognition of serendipity is correlated with an acknowledgment of the limits of expectations about potential sources of knowledge. I provide an analysis of serendipity (...)
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  27.  12
    The matter of facts: skepticism, persuasion, and evidence in science.G. Leng - 2020 - Cambridge, Massachusetts: The MIT Press. Edited by Rhodri Ivor Leng.
    Modern science faces a series of problems that undermine confidence in its reliability. To solve these problems, we must reflect on what makes science work and what leads it astray. This book is about Science, its strengths and weaknesses. The papers that scientists write form a vast resource of evidence and theory that is doubling about every ten years, along with the number of scientists. The size of this resource makes it hard for it to be used (...)
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  28.  43
    Moral communication in modern societies.Thomas Luckmann - 2002 - Human Studies 25 (1):19-32.
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  29.  6
    From philosophy in science to information in nature: Michael Heller’s ideas.Roman Krzanowski - 2023 - Zagadnienia Filozoficzne W Nauce 75:83-105.
    This paper discusses the concept of information formulated by Michael (Michał) Heller. Heller—a philosopher, theoretical physicist, cosmologist, and theologian—provided a complex image of information and its role in nature, which is rarely found in studies of information. Heller posited that the laws of nature may be interpreted as information, or as providing information, presenting this as a complementary view to scientific structuralism (not discussed in this paper). According to Heller, the informational content of a structure in nature is inversely proportional (...)
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  30. On serendipity in science: discovery at the intersection of chance and wisdom.Samantha M. Copeland - 2017 - Synthese (6):1-22.
    ‘Serendipity’ is a category used to describe discoveries in science that occur at the intersection of chance and wisdom. In this paper, I argue for understanding serendipity in science as an emergent property of scientific discovery, describing an oblique relationship between the outcome of a discovery process and the intentions that drove it forward. The recognition of serendipity is correlated with an acknowledgment of the limits of expectations about potential sources of knowledge. I provide an analysis of serendipity (...)
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  31.  37
    Community and the market in Michael Polanyi's philosophy of science.Charles Thorpe - 2009 - Modern Intellectual History 6 (1):59-89.
    The chemist and philosopher Michael Polanyi (1891–1976) is today recognized as one of the most important twentieth-century thinkers about scientific knowledge and scientific community. Yet Polanyi's philosophy of science exhibits an unresolved tension between science as a traditional community and science as an intellectual marketplace. Binding together these different models was important for his overall intellectual and political project, which was a defense of bourgeois liberal order. His philosophy of science and his economic thought were mutually (...)
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  32. Rationalizing Epistemology: An Argument Against Naturalism in Feminist Philosophy of Science.Maureen Linker - 1996 - Dissertation, City University of New York
    The dissertation involves an examination of recent work in Social Epistemology. In particular, I am concerned with the question of how one's social position could affect judgments regarding evidence and confirmation. To answer this question I undertake an investigation of feminist epistemology and philosophy of science. Feminist epistemologists have raised criticisms of the traditional analysis of knowledge by arguing against the primacy of the individual and for a more thorough-going analysis of the community in accounts of knowledge. This shift, (...)
     
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  33.  65
    Science, community, and the transformation of American philosophy, 1860-1930.Daniel J. Wilson - 1990 - Chicago: University of Chicago Press.
    In the first book-length study of American philosophy at the turn of the century, Daniel J. Wilson traces the formation of philosophy as an academic discipline. Wilson shows how the rise of the natural and physical sciences at the end of the nineteenth century precipitated a "crisis of confidence" among philosophers as to the role of their discipline. Deftly tracing the ways in which philosophers sought to incorporate scientific values and methods into their outlook and to redefine philosophy itself, Wilson (...)
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  34.  5
    Knowledge Communities in Europe: Exchange, Integration and its Limits.Bertold Schweitzer & Thomas Sukopp (eds.) - 2018 - Wiesbaden: Springer Fachmedien Wiesbaden.
    The publication presents research results on a multitude of knowledge exchange processes in post-enlightenment Europe. These focus on the question in how far deeply rooted processes of knowledge exchange by transnational intellectual discourses and international expert communities have contributed to a variety of networks of European intellectual identities and research practices. These practices again constitute a fertile framework for de-territorialised and de-nationalised exchange of knowledge that might contribute to contagious processes of emancipation, cooperation as well as problem solving.
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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 (...)
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  36.  16
    Improper communities in the work of Roberto Esposito and Jacques Rancière.Kevin Inston - 2020 - Contemporary Political Theory 19 (4):621-641.
    Recent theories of community aim to think the term beyond its definition as the ownership of shared identity, language, culture or territory. For Esposito, to reduce community to a property whose possession distinguishes members from non-members undermines the commonality the term implies. The common opposes what is proper or one’s own; it belongs to everyone and anyone. Rather than securing identity and belonging, community, defined by its impropriety, disrupts them so that we are in common. While his work successfully illustrates (...)
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  37. Gatekeeping in Science: Lessons from the Case of Psychology and Neuro-Linguistic Programming.Katherine Dormandy & Bruce Grimley - 2024 - Social Epistemology 38 (3):392-412.
    Gatekeeping, or determining membership of your group, is crucial to science: the moniker ‘scientific’ is a stamp of epistemic quality or even authority. But gatekeeping in science is fraught with dangers. Gatekeepers must exclude bad science, science fraud and pseudoscience, while including the disagreeing viewpoints on which science thrives. This is a difficult tightrope, not least because gatekeeping is a human matter and can be influenced by biases such as groupthink. After spelling out these general (...)
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  38.  17
    An Intimate Relation: Studies in the History and Philosophy of Science Presented to Robert E. Butts on His 60th Birthday (Boston Studies in the Philosophy of Science).J. R. Brown & J. Mittelstrass (eds.) - 1989 - Springer.
    The best philosophy of science during the last generation has been highly historical; and the best history of science, highly philosophical. No one has better exemplified this intimate relationship between history and philosophy than has Robert E. Butts in his work. Through out his numerous writings, science, its philosophy, and its history have been treated as a seamless web. The result has been a body of work that is sensitive in its conception, ambitious in its scope, and (...)
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  39.  91
    Understanding the Problem of “Hype”: Exaggeration, Values, and Trust in Science.Kristen Intemann - 2022 - Canadian Journal of Philosophy 52 (3):279-294.
    Several science studies scholars report instances of scientific “hype,” or sensationalized exaggeration, in journal articles, institutional press releases, and science journalism in a variety of fields (e.g., Caulfield and Condit 2012). Yet, how “hype” is being conceived varies. I will argue that hype is best understood as a particular kind of exaggeration, one that explicitly or implicitly exaggerates various positive aspects of science in ways that undermine the goals of science communication in a particular context. (...)
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  40.  19
    Creativity in Science as a Social Phenomenon.Ilya T. Kasavin - 2022 - Epistemology and Philosophy of Science 59 (3):19-29.
    The philosophical understanding of scientific creativity cannot be limited to the analysis of cognitive abilities or ways of solving problems. It is always anthropologically-laden, based on a historically specific image image of a human being that acquires knowledge. The problem of creativity also articulates a well-known paradox of novelty: the new does not arise from the old, since it is significantly different from it, but it cannot arise from nothing, because then it remains incomprehensible. Paul Feyerabend criticizes such a “mysterianic” (...)
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  41.  7
    Considering Finite Provinces of Meaning: The Problem of Communication in the Social Sciences.Jerry Williams - 2020 - Schutzian Research 12:155-170.
    This essay considers social science as a finite province of meaning. It is argued that teasing out common-sense meanings from social scientific conceptions is difficult because the meanings of scientific concepts are often veiled in life-worldly taken-for-grantedness. If social scientists have successfully created a scientific province of meaning, attempts to communicate findings outside of this reduced sphere of science should be somewhat problematic.
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  42.  20
    Roald Hoffmann on the philosophy, art, and science of chemistry.Roald Hoffmann - 2012 - New York: Oxford University Press. Edited by Jeffrey Kovac & Michael Weisberg.
    Roald Hoffmann's contributions to chemistry are well known; this Nobel laureate has published more than 500 articles and two books. As an "applied theoretical chemist," he has made significant contributions to our understanding of chemical bonding and reactivity, and taught two generations of chemists how to use molecular orbitals for real chemistry. Less well known, however, are Hoffmann's important and insightful contributions to the areas of scholarship surrounding chemistry. Over a career that spans nearly fifty years, Roald Hoffmann has thought (...)
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  43.  19
    From the Vienna Circle to the Institute Vienna Circle: On the Viennese Heritage in Contemporary Philosophy of Science.Friedrich Stadler - 2014 - Vienna Circle Institute Yearbook 17:9-32.
    The Vienna Circle as part of the intellectual movement of Central European philosophy of science is certainly one of the most important currents for the emergence of modern philosophy of science. Independent from this uncontested historical fact there remains the question of the direct and indirect infl uence, reception and topicality of this scientifi c community in contemporary general philosophy of science as well as in the philosophy of the individual sciences, including the social sciences and humanities.
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  44.  22
    Value transparency and promoting warranted trust in science communication.Kristen Intemann - 2024 - Synthese 203 (2):1-18.
    If contextual values can play necessary and beneficial roles in scientific research, to what extent should science communicators be transparent about such values? This question is particularly pressing in contexts where there appears to be significant resistance among some non-experts to accept certain scientific claims or adopt science-based policies or recommendations. This paper examines whether value transparency can help promote non-experts’ warranted epistemic trust of experts. I argue that there is a prima facie case in favor of transparency (...)
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  45.  23
    The Polish Immigrant Community in Spain in the Context of Political Changes and Modernization.Małgorzata Nalewajko - 2010 - Dialogue and Universalism 20 (9-10):29-38.
    Describing the formation of the Polish community in Spain in the 1990s, the article focuses on the political changes in both countries: processes of democratization (and, in the case of Poland, the resulting economic transformation) and then the EU enlargement, which contributed to this new influx. Polish expatriates, though not very numerous in comparison with other immigrant communities in contemporary Spain, became quite visible, especially in some towns of the Region of Madrid. In general, they enjoy a good reputation in (...)
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  46.  5
    Gender in Science and Technology: Interdisciplinary Approaches.Waltraud Ernst (ed.) - 2014 - Columbia University Press.
    What role does gender play in scientific research and the development of technologies? This book provides methodological expertise, research experiences and empirical results in the dynamic field of Science and Technology Studies. The authors, coming from disciplines as computer science, social sciences, or philosophy, discuss how to ask questions about gender and give examples for their application in interdisciplinary research, development and teaching. Topics range from the design of information and communication technologies, epistemologies of biology and chemistry (...)
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  47.  3
    Philosophy of Science in Russia.Ilya Kasavin & Vladimir Porus - 2016 - Epistemology and Philosophy of Science 48 (2):6-17.
    The article shows that Russian philosophical community is very sensitive towards the history and the current state of philosophy of science and of science studies, which are a subject matter of special interest by virtue of a dedicated space in the university education system. This status is also supported by its proximity to the international philosophical mainstream of the 20th century and its specific object, its connection with science. Philosophy of science at the same time retains (...)
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  48.  89
    Philosophy of Science in Germany, 1992–2012: Survey-Based Overview and Quantitative Analysis.Matthias Unterhuber, Alexander Gebharter & Gerhard Schurz - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):71-160.
    An overview of the German philosophy of science community is given for the years 1992–2012, based on a survey in which 159 philosophers of science in Germany participated. To this end, the institutional background of the German philosophy of science community is examined in terms of journals, centers, and associations. Furthermore, a qualitative description and a quantitative analysis of our survey results are presented. Quantitative estimates are given for: (a) academic positions, (b) research foci, (c) philosophers’ of (...)
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  49.  19
    Retractions and Rewards in Science: An Open Question for Reviewers and Funders.Sonia M. R. Vasconcelos, Michael W. Kalichman & Mariana D. Ribeiro - 2023 - Science and Engineering Ethics 29 (4):1-17.
    In recent years, the changing landscape for the conduct and assessment of research and of researchers has increased scrutiny of the reward systems of science. In this context, correcting the research record, including retractions, has gained attention and space in the publication system. One question is the possible influence of retractions on the careers of scientists. It might be assessed, for example, through citation patterns or productivity rates for authors who have had one or more retractions. This is an (...)
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  50.  7
    How to think in medicine: reasoning, decision making, and communication in health sciences and professions.Milos Jenicek - 2018 - New York, NY: Routledge, Taylor & Francis Group.
    "A CRC title, part of the Taylor & Francis imprint, a member of the Taylor & Francis Group, the academic division of T&F Informa plc.".
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