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Stephen M. Downes [10]Stephen Downes [4]
  1. The Importance of Models in Theorizing: A Deflationary Semantic View.Stephen M. Downes - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:142 - 153.
    I critically examine the semantic view of theories to reveal the following results. First, models in science are not the same as models in mathematics, as holders of the semantic view claim. Second, when several examples of the semantic approach are examined in detail no common thread is found between them, except their close attention to the details of model building in each particular science. These results lead me to propose a deflationary semantic view, which is simply that model construction (...)
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  2. Evolutionary Psychology.Stephen M. Downes - 2016 - In Lee C. McIntyre & Alexander Rosenberg (eds.), The Routledge Companion to Philosophy of Social Science. New York: Routledge. pp. 330-339.
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  3. Scientific Models.Stephen M. Downes - 2011 - Philosophy Compass 6 (11):757-764.
    This contribution provides an assessment of the epistemological role of scientific models. The prevalent view that all scientific models are representations of the world is rejected. This view points to a unified way of resolving epistemic issues for scientific models. The emerging consensus in philosophy of science that models have many different epistemic roles in science is presented and defended.
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  4. Evolutionary psychology, adaptation and design.Stephen M. Downes - 2015 - In Thomas Heams, Philippe Huneman, Guillaume Lecointre & Marc Silberstein (eds.), Handbook of Evolutionary Thinking in the Sciences. Springer. pp. 659-673.
    I argue that Evolutionary Psychologists’ notion of adaptationism is closest to what Peter Godfrey-Smith (2001) calls explanatory adaptationism and as a result, is not a good organizing principle for research in the biology of human behavior. I also argue that adopting an alternate notion of adaptationism presents much more explanatory resources to the biology of human behavior. I proceed by introducing Evolutionary Psychology and giving some examples of alternative approaches to the biological explanation of human behavior. Next I characterize adaptation (...)
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  5. Socializing naturalized philosophy of science.Stephen M. Downes - 1993 - Philosophy of Science 60 (3):452-468.
    I propose an approach to naturalized philosophy of science that takes the social nature of scientific practice seriously. I criticize several prominent naturalistic approaches for adopting "cognitive individualism", which limits the study of science to an examination of the internal psychological mechanisms of scientists. I argue that this limits the explanatory capacity of these approaches. I then propose a three-level model of the social nature of scientific practice, and use the model to defend the claim that scientific knowledge is socially (...)
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  6. No Magic Bullet Explains the Evolution of Unique Human Traits.Stephen M. Downes - 2013 - Biological Theory 8 (1):15-19.
    Here I outline the argument in Kim Sterelny’s book The Evolved Apprentice. I present some worries for Sterelny from the perspective of modelers in behavioral ecology. I go on to discuss Sterelny’s approach to moral psychology and finally introduce some potential new applications for his evolved apprentice view.
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  7. How much work do scientific images do?Stephen Downes - 2012 - Spontaneous Generations 6 (1):115-130.
    In this paper, I defend the view that there are many scientific images that have a serious epistemic role in science but this role is not adequately accounted for by the going view of representation and its attendant theoretical commitments. The relevant view of representation is Laura Perini’s account of representation for scientific images. I draw on Adina Roskies’ work on scientific images as well as work on models in science to support my conclusion.
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  8. Learning Networks and Connective Knowledge.Stephen Downes - 2010 - In Harrison Hao Yang & Steve Chi-Yin Yuen (eds.), Collective Intelligence and E-Learning 2.0: Implications of Web-Based Communities and Networking. IGI Global.
    The purpose of this chapter is to outline some of the thinking behind new e-learning technology, including e-portfolios and personal learning environments. Part of this thinking is centered around the theory of connectivism, which asserts that knowledge - and therefore the learning of knowledge - is distributive, that is, not located in any given place (and therefore not 'transferred' or 'transacted' per se) but rather consists of the network of connections formed from experience and interactions with a knowing community. And (...)
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  9. The Theory Theory Thrice Over: The Child as Scientist, Superscientist or Social Institution?Michael A. Bishop & Stephen M. Downes - 2002 - Studies in History and Philosophy of Science Part A 33 (1):117-132.
    Alison Gopnik and Andrew Meltzoff have argued for a view they call the ‘theory theory’: theory change in science and children are similar. While their version of the theory theory has been criticized for depending on a number of disputed claims, we argue that there is a fundamental problem which is much more basic: the theory theory is multiply ambiguous. We show that it might be claiming that a similarity holds between theory change in children and (i) individual scientists, (ii) (...)
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  10. Scientific Imperialism and explanatory appeals to evolution in the social sciences.Stephen M. Downes - 2018 - In Uskali Mäki, Adrian Walsh & Manuela Fernández Pinto (eds.), Scientific Imperialism: Exploring the Boundaries of Interdisciplinarity. New York, NY, USA: pp. 224-236.
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  11. Conditional variability.Stephen Downes - 1987 - Calgary Working Papers in Linguistics 13:1-14.
    In this paper it will be shown that when a conditional statement is understood or known to be true, a number of implicitly specified variables are given more or less concrete values. Each of the variables will be defined and examples will be employed to demonstrate their use in conditional evaluation. From time to time this analysis in terms of variables will be contrasted with a 'possible worlds' analysis of conditionals. The purpose of this paper is not to argue against (...)
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  12. Alternative Splicing, the Gene Concept, and Evolution.Stephen Downes - 2004 - History and Philosophy of the Life Sciences 26 (1):91 - 104.
    Alternative splicing allows for the production of many gene products from a single coding sequence. I introduce the concept of alternative splicing via some examples. I then discuss some current hypotheses about the explanatory role of alternative splicing, including the claim that splicing is a significant contributor to the difference in complexity between the human genome and proteosome. Hypotheses such as these bring into question our working concepts of the gene. I examine several gene concepts introduced to cope with processes (...)
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