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  1. (2 other versions)Social Empiricism.Miriam Solomon - 2005 - Philosophy and Phenomenological Research 70 (2):495-498.
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  • Is Water H2O? Evidence, Realism and Pluralism.Hasok Chang - 2012 - Boston Studies in the Philosophy and History of Science.
    This book exhibits deep philosophical quandaries and intricacies of the historical development of science lying behind a simple and fundamental item of common sense in modern science, namely the composition of water as H2O. Three main phases of development are critically re-examined, covering the historical period from the 1760s to the 1860s: the Chemical Revolution, early electrochemistry, and early atomic chemistry. In each case, the author concludes that the empirical evidence available at the time was not decisive in settling the (...)
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  • (1 other version)One phenomenon, many models: Inconsistency and complementarity.Margaret Morrison - 2011 - Studies in History and Philosophy of Science Part A 42 (2):342-351.
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  • Scientific Representation: Paradoxes of Perspective.Bas C. Van Fraassen - 2008 - Oxford, GB: Oxford University Press UK.
    Bas C. van Fraassen presents an original exploration of how we represent the world.
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  • (1 other version)One phenomenon, many models: Inconsistency and complementarity.Margaret Morrison - 2011 - Studies in History and Philosophy of Science Part A 42 (2):342-351.
    The paper examines philosophical issues that arise in contexts where one has many different models for treating the same system. I show why in some cases this appears relatively unproblematic (models of turbulence) while others represent genuine difficulties when attempting to interpret the information that models provide (nuclear models). What the examples show is that while complementary models needn’t be a hindrance to knowledge acquisition, the kind of inconsistency present in nuclear cases is, since it is indicative of a lack (...)
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  • Groupthink_ versus _The Wisdom of Crowds: The Social Epistemology of Deliberation and Dissent.Miriam Solomon - 2006 - Southern Journal of Philosophy 44 (S1):28-42.
    Trust in the practice of rational deliberation is widespread and largely unquestioned. This paper uses recent work from business contexts to challenge the view that rational deliberation in a group improves decisions. Pressure to reach consensus can, in fact, lead to phenomena such as groupthink and to suppression of relevant data. Aggregation of individual decisions, rather than deliberation to a consensus, surprisingly, can produce better decisions than those of either group deliberation or individual expert judgment. I argue that dissent is (...)
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  • (4 other versions)The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • Scientific perspectivism.Ronald N. Giere - 2006 - Chicago: University of Chicago Press.
    Many people assume that the claims of scientists are objective truths. But historians, sociologists, and philosophers of science have long argued that scientific claims reflect the particular historical, cultural, and social context in which those claims were made. The nature of scientific knowledge is not absolute because it is influenced by the practice and perspective of human agents. Scientific Perspectivism argues that the acts of observing and theorizing are both perspectival, and this nature makes scientific knowledge contingent, as Thomas Kuhn (...)
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  • (4 other versions)The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • The View From Nowhere.Thomas Nagel - 1986 - New York: Oxford University Press.
    Human beings have the unique ability to view the world in a detached way: We can think about the world in terms that transcend our own experience or interest, and consider the world from a vantage point that is, in Nagel's words, "nowhere in particular". At the same time, each of us is a particular person in a particular place, each with his own "personal" view of the world, a view that we can recognize as just one aspect of the (...)
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  • (1 other version)Causality in the Sciences.Phyllis McKay Illari, Federica Russo & Jon Williamson (eds.) - 2011 - New York: Oxford University Press.
    Why do ideas of how mechanisms relate to causality and probability differ so much across the sciences? Can progress in understanding the tools of causal inference in some sciences lead to progress in others? This book tackles these questions and others concerning the use of causality in the sciences.
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  • (1 other version)Why look at Causality in the Sciences?Phyllis McKay Illari, Federica Russo & Jon Williamson - 2011 - In Phyllis McKay Illari Federica Russo (ed.), Causality in the Sciences. Oxford University Press.
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  • Points of view: Kant on perspectival knowledge.Michela Massimi - 2018 - Synthese 198 (S13):3279-3296.
    The aim of this paper is to cast new light on an important and often overlooked notion of perspectival knowledge arising from Kant. In addition to a traditional notion of perspectival knowledge as "knowledge from a vantage point", a second novel notion — "knowledge towards a vantage point" —is here introduced. The origin and rationale of perspectival knowledge 2 are traced back to Kant's so-called transcendental illusion. The legacy of the Kantian notion of perspectival knowledge 2 for contemporary discussions on (...)
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  • Realism and Explanatory Perspectivism.Juha Saatsi - 2020 - In Michela Massimi & Casey D. McCoy (eds.), Understanding Perspectivism (Open Access): Scientific Challenges and Methodological Prospects. New York, NY, USA: Routledge.
    This chapter defends a (minimal) realist conception of progress in scientific understanding in the face of the ubiquitous plurality of perspectives in science. The argument turns on the counterfactual-dependence framework of explanation and understanding, which is illustrated and evidenced with reference to different explanations of the rainbow.
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  • The view from nowhere.Thomas Nagel - 1986 - Revue Philosophique de la France Et de l'Etranger 178 (2):221-222.
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  • The devil is in the (historical) details: Continental drift as a case of normatively appropriate consensus?Naomi Oreskes - 2008 - Perspectives on Science 16 (3):pp. 253-264.
    In Social Empiricism, Miriam Solomon proposes a via media between traditional philosophical realism and social construction of scientific knowledge, but ignores a large body of historical literature that has attempted to plough just that path. She also proposes a standard for normatively appropriate consensus that, arguably, no theory in the history of science has ever achieved, including her own ideal type—plate tectonics. And while valorizing dissent, she fails to consider how dissent has been used in recent decades as a political (...)
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  • Kuhn as Perspectival Realist.Ronald N. Giere - 2013 - Topoi 32 (1):53-57.
    In this essay I argue that T. S. Kuhn, at least in his later works, can be regarded as a perspectival realist. This is a retrospective interpretation based mainly on the essays published posthumously under the title The Road Since Structure (Kuhn 2000). Among the strongest grounds for this interpretation is that Kuhn explicitly states that one must have a “lexicon” in place before raising questions about the truth or falsity of claims made using elements of the lexicon. This, in (...)
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  • Consensus in Science.Miriam Solomon - 2001 - The Proceedings of the Twentieth World Congress of Philosophy 10:193-204.
    Because the idea of consensus in contemporary philosophy of science is typically seen as the locus of progress, rationality, and, often, truth, Mill’s views on the undesirability of consensus have been largely dismissed. The historical data, however, shows that there are many examples of scientific progress without consensus, thus refuting the notion that consensus in science has any special epistemic status for rationality, scientific progress (success), or truth. What needs to be developed instead is an epistemology of dissent. I suggest (...)
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  • (2 other versions)Social empiricism.Miriam Solomon - 1994 - Noûs 28 (3):325-343.
    A new, social epistemology of science that addresses practical as well as theoretical concerns.
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  • (2 other versions)Social Empiricism.Miriam Solomon - 2003 - Philosophy 78 (303):132-136.
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  • Above the gene, beyond biology: toward a philosophy of epigenetics.Jan Baedke - 2018 - Pittsburgh, Pa.: University of Pittsburgh Press.
    Epigenetics is currently one of the fastest-growing fields in the sciences. Epigenetic information not only controls DNA expression but links genetic factors with the environmental experiences that influence the traits and characteristics of an individual. What we eat, where we work, and how we live affects not only the activity of our genes but that of our offspring as well. This discovery has imposed a revolutionary theoretical shift on modern biology, especially on evolutionary theory. It has helped to uncover the (...)
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  • Perspectival Modeling.Michela Massimi - 2018 - Philosophy of Science 85 (3):335-359.
    The goal of this article is to address the problem of inconsistent models and the challenge it poses for perspectivism. I analyze the argument, draw attention to some hidden premises behind it, and deflate them. Then I introduce the notion of perspectival models as a distinctive class of modeling practices whose primary function is exploratory. I illustrate perspectival modeling with two examples taken from contemporary high-energy physics at the Large Hadron Collider at the European Organization for Nuclear Research, which are (...)
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  • Understanding Perspectivism (Open Access): Scientific Challenges and Methodological Prospects.Michela Massimi & Casey D. McCoy - 2020 - New York, NY, USA: Routledge.
    This edited collection is the first of its kind to explore the view called perspectivism in philosophy of science. The book brings together an array of essays that reflect on the methodological promises and scientific challenges of perspectivism in a variety of fields such as physics, biology, cognitive neuroscience, and cancer research, just as a few examples. What are the advantages of using a plurality of perspectives in a given scientific field and for interdisciplinary research? Can different perspectives be integrated? (...)
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  • Scientific Representation: Paradoxes of Perspective.B. C. van Fraassen - 2010 - Analysis 70 (3):511-514.
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  • Perspectivism, inconsistent models, and contrastive explanation.Anjan Chakravartty - 2010 - Studies in History and Philosophy of Science Part A 41 (4):405-412.
    It is widely recognized that scientific theories are often associated with strictly inconsistent models, but there is little agreement concerning the epistemic consequences. Some argue that model inconsistency supports a strong perspectivism, according to which claims serving as interpretations of models are inevitably and irreducibly perspectival. Others argue that in at least some cases, inconsistent models can be unified as approximations to a theory with which they are associated, thus undermining this kind of perspectivism. I examine the arguments for perspectivism, (...)
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  • The View from Nowhere.Thomas Nagel - 1986 - Ethics 98 (1):137-157.
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  • Epigenetics: ambiguities and implications.Karola Stotz & Paul Griffiths - 2016 - History and Philosophy of the Life Sciences 38 (4):1-20.
    Everyone has heard of ‘epigenetics’, but the term means different things to different researchers. Four important contemporary meanings are outlined in this paper. Epigenetics in its various senses has implications for development, heredity, and evolution, and also for medicine. Concerning development, it cements the vision of a reactive genome strongly coupled to its environment. Concerning heredity, both narrowly epigenetic and broader ‘exogenetic’ systems of inheritance play important roles in the construction of phenotypes. A thoroughly epigenetic model of development and evolution (...)
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  • Social Empiricism.Miriam Solomon - 2001 - Cambridge, MA, USA: MIT Press.
    For the last forty years, two claims have been at the core of disputes about scientific change: that scientists reason rationally and that science is progressive. For most of this time discussions were polarized between philosophers, who defended traditional Enlightenment ideas about rationality and progress, and sociologists, who espoused relativism and constructivism. Recently, creative new ideas going beyond the polarized positions have come from the history of science, feminist criticism of science, psychology of science, and anthropology of science. Addressing the (...)
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  • Causality, Probability, and Medicine.Donald Gillies - 2017 - New York: Routledge.
    Why is understanding causation so important in philosophy and the sciences? Should causation be defined in terms of probability? Whilst causation plays a major role in theories and concepts of medicine, little attempt has been made to connect causation and probability with medicine itself. Causality, Probability, and Medicine is one of the first books to apply philosophical reasoning about causality to important topics and debates in medicine. Donald Gillies provides a thorough introduction to and assessment of competing theories of causality (...)
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  • The View from Nowhere.Thomas Nagel - 1986 - Behaviorism 15 (1):73-82.
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  • The View from Nowhere.Thomas Nagel - 1986 - Zeitschrift für Philosophische Forschung 43 (2):399-403.
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