-
Expand entry
-
Added by: Chris Blake-Turner, Contributed by: Milena Ivanova
Abstract: Poincare is well known for his conventionalism and structuralism. However, the relationship between these two theses and their place in Poincare's epistemology of science remain puzzling. In this paper I show the scope of Poincare's conventionalism and its position in Poincare's hierarchical approach to scientific theories. I argue that for Poincare scientific knowledge is relational and made possible by synthetic a priori, empirical and conventional elements, which, however, are not chosen arbitrarily. By examining his geometric conventionalism, his hierarchical account of science and defence of continuity in theory change, I argue that Poincare defends a complex structuralist position based on synthetic a priori and conventional elements, the mind-dependence of which precludes epistemic access to mind-independent structures.Zuckert, Rachel. Kant on Beauty and Biology: An Interpretation of the ‘Critique of Judgment’2007, Cambridge University Press.-
Expand entry
-
Added by: Clotilde Torregrossa, Contributed by: Jonas Jervell Indregard
Publisher's Note: Kant's Critique of Judgment has often been interpreted by scholars as comprising separate treatments of three uneasily connected topics: beauty, biology, and empirical knowledge. Rachel Zuckert's book interprets the Critique as a unified argument concerning all three domains. She argues that on Kant's view, human beings demonstrate a distinctive cognitive ability in appreciating beauty and understanding organic life: an ability to anticipate a whole that we do not completely understand according to preconceived categories. This ability is necessary, moreover, for human beings to gain knowledge of nature in its empirical character as it is, not as we might assume it to be. Her wide-ranging and original study will be valuable for readers in all areas of Kant's philosophy.Comment: Perfect for a course on Kant's Third Critique. Covers both of the main parts of that work, namely the critique of aesthetic judgment and the critique of teleological judgment.
Von Eckardt, Barbara. The representational theory of mind2012, In Keith Frankish & William Ramsey (eds.), The Cambridge Handbook of Cognitive Science. Cambridge University Press.-
Expand entry
-
Added by: Clotilde Torregrossa, Contributed by: Simon Fokt
Abstract: It is argued that it is important for cognitive scientists to understand both the precise nature of RTM, and the challenges to it. The biggest foundational challenge is to develop an adequate naturalistic theory of how representational content is determined. Philosophers have proposed several ingenious theory-sketches of content determination but none accounts for the full range of semantic features mental representations arguably have. Another major challenge is the existence of non-representational competitor research programs. A likely future scenario is that we will be able to explain certain 'low-level' aspects of cognition without resort to representations but that representational hypotheses will still be needed to account for the intentionality-based features of cognition and 'representation hungry' higher-level processes.Comment:
Sterrett, Susan G.. Darwin’s analogy between artificial and natural selection: how does it go?2002, Studies in History and Philosophy of Science Part C 33 (1):151-168.-
Expand entry
-
Added by: Chris Blake-Turner, Contributed by: Susan G. Sterrett
Abstract: The analogy Darwin drew between artificial and natural selection in "On the Origin of Species" has a detailed structure that has not been appreciated. In Darwin's analogy, the kind of artificial selection called Methodical selection is analogous to the principle of divergence in nature, and the kind of artificial selection called Unconscious selection is analogous to the principle of extinction in nature. This paper argues that it is the analogy between these two different principles familiar from his studies of artificial selection and the two different principles he claims are operative in nature that provides the main structure and force of the analogy he uses to make his case for the power of natural selection to produce new species. Darwin's statements explicitly distinguishing between these two kinds of principles at work in nature occur prominently in the text of the Origin. The paper also shows that a recent revisionist claim that Darwin did not appeal to the efficacy of artificial selection is mistakenComment: This paper is useful in discussing Darwin's theory as he presented it, i.e., without a knowledge of genetics. It could also be used in discussing analogy and/or metaphor in science.
Potochnik, Angela. Feminist implications of model-based science2012, Studies in History and Philosophy of Science Part A 43 (2):383-389.-
Expand entry
-
Added by: Clotilde Torregrossa, Contributed by: Simon Fokt
Abstract: Recent philosophy of science has witnessed a shift in focus, in that significantly more consideration is given to how scientists employ models. Attending to the role of models in scientific practice leads to new questions about the representational roles of models, the purpose of idealizations, why multiple models are used for the same phenomenon, and many more besides. In this paper, I suggest that these themes resonate with central topics in feminist epistemology, in particular prominent versions of feminist empiricism, and that model-based science and feminist epistemology each has crucial resources to offer the other's project.Comment:
Plutynski, Anya. The rise and fall of the adaptive landscape?2008, Biology and Philosophy 23 (5):605-623.-
Expand entry
-
Added by: Chris Blake-Turner, Contributed by: Anya Plutynski
Abstract: The discussion of the adaptive landscape in the philosophical literature appears to be divided along the following lines. On the one hand, some claim that the adaptive landscape is either 'uninterpretable' or incoherent. On the other hand, some argue that the adaptive landscape has been an important heuristic, or tool in the service of explaining, as well as proposing and testing hypotheses about evolutionary change. This paper attempts to reconcile these two views.Comment: I use this in my philosophy of biology class to discuss the use of metaphor and analogy in science.
Parker, Wendy S.. When Climate Models Agree: The Significance of Robust Model Predictions2011, Philosophy of Science 78 (4):579-600.-
Expand entry
-
Added by: Clotilde Torregrossa, Contributed by: Simon Fokt
Abstract: This article identifies conditions under which robust predictive modeling results have special epistemic significance---related to truth, confidence, and security---and considers whether those conditions hold in the context of present-day climate modeling. The findings are disappointing. When today's climate models agree that an interesting hypothesis about future climate change is true, it cannot be inferred---via the arguments considered here anyway---that the hypothesis is likely to be true or that scientists' confidence in the hypothesis should be significantly increased or that a claim to have evidence for the hypothesis is now more secureComment:
Millstein, Roberta L.. Probability in Biology: The Case of Fitness2016,-
Expand entry
-
Added by: Barbara Cohn, Contributed by: Anya Plutynski
Abstract: I argue that the propensity interpretation of fitness, properly understood, not only solves the explanatory circularity problem and the mismatch problem, but can also withstand the Pandora's box full of problems that have been thrown at it. Fitness is the propensity (i.e., probabilistic ability, based on heritable physical traits) for organisms or types of organisms to survive and reproduce in particular environments and in particular populations for a specified number of generations; if greater than one generation, 'reproduction' includes descendants of descendants. Fitness values can be described in terms of distributions of propensities to produce varying number of offspring and can be modeled for any number of generations using computer simulations, thus providing both predictive power and a means for comparing the fitness of different phenotypes. Fitness is a causal concept, most notably at the population level, where fitness differences are causally responsible for differences in reproductive success. Relative fitness is ultimately what matters for natural selection.Comment: I use this in discussions of natural selection and probability in evolution.
Millikan, Ruth Garrett. Historical kinds and the “special sciences”1999, Philosophical Studies 95 (1-2):45-65.-
Expand entry
-
Added by: Clotilde Torregrossa, Contributed by: Juan R. Loaiza
Abstract: There are no "special sciences" in Fodor's sense. There is a large group of sciences, "historical sciences," that differ fundamentally from the physical sciences because they quantify over a different kind of natural or real kind, nor are the generalizations supported by these kinds exceptionless. Heterogeneity, however, is not characteristic of these kinds. That there could be an univocal empirical science that ranged over multiple realizations of a functional property is quite problematic. If psychological predicates name multiply realized functionalist properties, then there is no single science dealing with these: human psychology, ape psychology, Martian psychology and robot psychology are necessarily different sciencesComment:
Millikan, Ruth Garrett. Naturalizing intentionality2000, In Bernard Elevitch (ed.), The Proceedings of the Twentieth World Congress of Philosophy. Philosopy Documentation Center. pp. 83-90.-
Expand entry
-
Added by: Clotilde Torregrossa, Contributed by: Simon Fokt
Abstract: Brentano was surely mistaken, however, in thinking that bearing a relation to something nonexistent marks only the mental. Given any sort of purpose, it might not get fulfilled, hence might exhibit Brentano's relation, and there are many natural purposes, such as the purpose of one's stomach to digest food or the purpose of one's protective eye blink reflex to keep out the sand, that are not mental, nor derived from anything mental. Nor are stomachs and reflexes "of" or"about" anything. A reply might be, I suppose, that natural purposes are "purposes" only in an analogical sense hence "fail to be fulfilled" only in an analogical way. They bear an analogy to things that have been intentionally designed by purposive minds, hence can fail to accomplish the purposes they analogically have. As such they also have only analogical "intentionality". Such a response begs the question, however, for it assumes that natural purposes are not purposes in the full sense exactly because they are notComment:
Can’t find it?Contribute the texts you think should be here and we’ll add them soon!
-
-
-
This site is registered on Toolset.com as a development site. -
-
-
-
-
-
Ivanova, Milena. Conventionalism, structuralism and neo-Kantianism in Poincare’s philosophy of science
2015, Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 52 (Part B):114-122.
Comment: