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Philosophy of Biology

Boulder, Colo.: Westview Press (1993)

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  1. The Cronin controversy. [REVIEW]Paul E. Griffiths - 1995 - British Journal for the Philosophy of Science 46 (1):122-138.
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  • Replicators and vehicles? Or developmental systems?P. E. Griffiths & R. D. Gray - 1994 - Behavioral and Brain Sciences 17 (4):623-624.
  • Descartes on the passions: Function, representation, and motivation.Sean Greenberg - 2007 - Noûs 41 (4):714–734.
  • A Philosophical Evaluation of Adaptationism as a Heuristic Strategy.Sara Green - 2014 - Acta Biotheoretica 62 (4):479-498.
    Adaptationism has for decades been the topic of sophisticated debates in philosophy of biology but methodological adaptationism has not received as much attention as the empirical and explanatory issues. In addition, adaptationism has mainly been discussed in the context of evolutionary biology and not in fields such as zoophysiology and systems biology where this heuristic is also used in design analyses of physiological traits and molecular structures. This paper draws on case studies from these fields to discuss the productive and (...)
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  • Putting the cart back behind the horse: Group selection does not require that groups be “organisms”.Todd A. Grantham - 1994 - Behavioral and Brain Sciences 17 (4):622-623.
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  • K. Sterelny and P. E. Griffiths sex and death: An introduction to philosophy of biology.Todd A. Grantham - 2001 - British Journal for the Philosophy of Science 52 (1):175-179.
  • Contextual analysis and group selection.Charles J. Goodnight - 1994 - Behavioral and Brain Sciences 17 (4):622-622.
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  • Commentary/Elqayam & Evans: Subtracting “ought” from “is”.Natalie Gold, Andrew M. Colman & Briony D. Pulford - 2011 - Behavioral and Brain Sciences 34 (5).
    Normative theories can be useful in developing descriptive theories, as when normative subjective expected utility theory is used to develop descriptive rational choice theory and behavioral game theory. “Ought” questions are also the essence of theories of moral reasoning, a domain of higher mental processing that could not survive without normative considerations.
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  • Missing Concepts in Natural Selection Theory Reconstructions.Santiago Ginnobili - 2016 - History and Philosophy of the Life Sciences 38 (3):1-33.
    The concept of fitness has generated a lot of discussion in philosophy of biology. There is, however, relative agreement about the need to distinguish at least two uses of the term: ecological fitness on the one hand, and population genetics fitness on the other. The goal of this paper is to give an explication of the concept of ecological fitness by providing a reconstruction of the theory of natural selection in which this concept was framed, that is, based on the (...)
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  • Me, you, and us: Distinguishing “egoism,” “altruism,” and “groupism”.Margaret Gilbert - 1994 - Behavioral and Brain Sciences 17 (4):621-622.
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  • Group selection and “genuine” altruism.Robert H. Frank - 1994 - Behavioral and Brain Sciences 17 (4):620-621.
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  • Nietzsche was no Darwinian.Patrick Forber - 2007 - Philosophy and Phenomenological Research 75 (2):369–382.
    John Richardson (2002, 2004) argues that Nietzsche’s use of teleological notions, such as the “will to power” and psychological “drives,” can be naturalized within the Darwinian framework of natural selection. Although this ambitious project has merit, the Darwinian framework does not provide the strong teleology necessary to interpret Nietzsche’s explanatory project. Examining the logic of selection, the conceptual limitations on biological functions, and the evidential demands that must be met to deploy evolutionary theory show that Nietzsche’s explanatory project does not (...)
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  • Nietzsche Was No Darwinian.Patrick Forber - 2007 - Philosophy and Phenomenological Research 75 (2):369-382.
    John Richardson (2002, 2004) argues that Nietzsche’s use of teleological notions, such as the “will to power” and psychological “drives,” can be naturalized within the Darwinian framework of natural selection. Although this ambitious project has merit, the Darwinian framework does not provide the strong teleology necessary to interpret Nietzsche’s explanatory project. Examining the logic of selection, the conceptual limitations on biological functions, and the evidential demands that must be met to deploy evolutionary theory show that Nietzsche’s explanatory project does not (...)
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  • Likelihood, Analogy, and the Design Argument: A Discussion of Sober.Richard Foley - 2013 - History of Philosophy & Logical Analysis 16 (1):309-330.
    Recent work by Eliot Sober regarding the logical structure of the design argument challenges widely held views on how the history of this argument should be understood. This novel “likelihood interpretation” denies that the design argument is an analogical argument. Instead, Sober suggests that all references to artifacts serve an exclusively heuristic function, and do not play an evidential role in the design argument. In contrast, I contend that philosophical considerations as well as historical analysis of the works of David (...)
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  • Methodology in evolutionary psychology.Sally Ferguson - 2002 - Biology and Philosophy 17 (5):635-650.
  • Replacing Functional Reduction with Mechanistic Explanation.Markus I. Eronen - 2011 - Philosophia Naturalis 48 (1):125-153.
    Recently the functional model of reduction has become something like the standard model of reduction in philosophy of mind. In this paper, I argue that the functional model fails as an account of reduction due to problems related to three key concepts: functionalization, realization and causation. I further argue that if we try to revise the model in order to make it more coherent and scientifically plausible, the result is merely a simplified version of what in philosophy of science is (...)
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  • Species, Historicity, and Path Dependency.Marc Ereshefsky - 2014 - Philosophy of Science 81 (5):714-726.
    This paper clarifies the historical nature of species by showing that species are path-dependent entities. A species’ identity is not determined by its intrinsic properties or its origin, but by its unique evolutionary path. Seeing that species are path-dependent entities has three implications: it shows that origin essentialism is mistaken, it rebuts two challenges to the species-are-historical-entities thesis, and it demonstrates that the identity of a species during speciation depends on future events.
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  • Scientific kinds.Marc Ereshefsky & Thomas A. C. Reydon - 2015 - Philosophical Studies 172 (4):969-986.
    Richard Boyd’s Homeostatic Property Cluster Theory is becoming the received view of natural kinds in the philosophy of science. However, a problem with HPC Theory is that it neglects many kinds highlighted by scientific classifications while at the same time endorsing kinds rejected by science. In other words, there is a mismatch between HPC kinds and the kinds of science. An adequate account of natural kinds should accurately track the classifications of successful science. We offer an alternative account of natural (...)
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  • Some philosophical implications of the rehabilitation of group selection.John Dupré - 1994 - Behavioral and Brain Sciences 17 (4):619-620.
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  • Subtle ways of shifting the balance in favor of between-group selection.Lee Alan Dugatkin - 1994 - Behavioral and Brain Sciences 17 (4):618-619.
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  • Truth, selection and scientific inquiry.Stephen M. Downes - 2000 - Biology and Philosophy 15 (3):425-442.
    In this paper I examine various ways in whichphilosophers have made connections between truth andnatural selection. I introduce several versions ofthe view that mechanisms of true belief generationarise as a result of natural selection and argue thatthey fail to establish a connection between truth andnatural selection. I then turn to scientific truthsand argue that evolutionary accounts of the origin ofscientific truth generation mechanisms also fail. Iintroduce David Hull's selectionist model ofscientific development and argue that his account ofscientific success does not (...)
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  • Rational choice and trust.Keith Dowding - 2001 - Critical Review of International Social and Political Philosophy 4 (4):207-220.
  • How to confuse organisms with mousetraps: Machine metaphors and intelligent design.Doren Recker - 2010 - Zygon 45 (3):647-664.
    Why do design arguments—particularly those emphasizing machine metaphors such as “Organisms and/or their parts are machines”—continue to be so convincing to so many people after they have been repeatedly refuted? In this essay I review various interpretations and refutations of design arguments and make a distinction between rationally refuting such arguments (RefutingR) and rendering them psychologically unconvincing (RefutingP). Expanding on this distinction, I provide support from recent work on the cognitive power of metaphors and developmental psychological work indicating a basic (...)
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  • Who Got What Wrong? Fodor and Piattelli on Darwin: Guiding Principles and Explanatory Models in Natural Selection.José Díez & Pablo Lorenzano - 2013 - Erkenntnis 78 (5):1143-1175.
    The purpose of this paper is to defend, contra Fodor and Piattelli-Palmarini (F&PP), that the theory of natural selection (NS) is a perfectly bona fide empirical unified explanatory theory. F&PP claim there is nothing non-truistic, counterfactual-supporting, of an “adaptive” character and common to different explanations of trait evolution. In his debate with Fodor, and in other works, Sober defends NS but claims that, compared with classical mechanics (CM) and other standard theories, NS is peculiar in that its explanatory models are (...)
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  • Are natural selection explanatory models a priori?José Díez & Pablo Lorenzano - 2015 - Biology and Philosophy 30 (6):787-809.
    The epistemic status of Natural Selection has seemed intriguing to biologists and philosophers since the very beginning of the theory to our present times. One prominent contemporary example is Elliott Sober, who claims that NS, and some other theories in biology, and maybe in economics, are peculiar in including explanatory models/conditionals that are a priori in a sense in which explanatory models/conditionals in Classical Mechanics and most other standard theories are not. Sober’s argument focuses on some “would promote” sentences that (...)
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  • Resurrecting biological essentialism.Michael Devitt - 2008 - Philosophy of Science 75 (3):344-382.
    The article defends the doctrine that Linnaean taxa, including species, have essences that are, at least partly, underlying intrinsic, mostly genetic, properties. The consensus among philosophers of biology is that such essentialism is deeply wrong, indeed incompatible with Darwinism. I argue that biological generalizations about the morphology, physiology, and behavior of species require structural explanations that must advert to these essential properties. The objection that, according to current “species concepts,” species are relational is rejected. These concepts are primarily concerned with (...)
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  • Individual essentialism in biology.Michael Devitt - 2018 - Biology and Philosophy 33 (5-6):39.
    A few philosophers of biology have recently explicitly rejected Essential Membership, the doctrine that if an individual organism belongs to a taxon, particularly a species, it does so essentially. But philosophers of biology have not addressed the broader issue, much discussed by metaphysicians on the basis of modal intuitions, of what is essential to the organism. In this paper, I address that issue from a biological basis, arguing for the Kripkean view that an organism has a partly intrinsic, partly historical, (...)
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  • Explanation in Biology: An Enquiry into the Diversity of Explanatory Patterns in the Life Sciences.P.-A. Braillard and C. Malaterre (ed.) - 2015 - Springer.
  • The Place of Probability in Science: In Honor of Ellery Eells (1953-2006).Ellery Eells & James H. Fetzer (eds.) - 2010 - Springer.
  • Teleological Arguments for God’s Existence.Jeffrey Koperski & Del Ratzsch - 2015 - Stanford Encyclopedia of Philosophy.
    -/- Some phenomena within nature exhibit such exquisiteness of structure, function or interconnectedness that many people have found it natural—if not inescapable—to see a deliberative and directive mind behind those phenomena. The mind in question, being prior to nature itself, is typically taken to be supernatural. Philosophically inclined thinkers have both historically and at present labored to shape the relevant intuition into a more formal, logically rigorous inference. The resultant theistic arguments, in their various logical forms, share a focus on (...)
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  • Ridurre il riduzionismo genetico.Gereon Wolters - 2008 - Humana Mente 2 (6).
    n this article the author develops a critique of reductionism in biological sciences from three different points of view. The first is related to the problem of reduction in the context of scientific theories. More specifically, reduction deals with a special form of intertheoretic relationship between molecular biology and the rest of biology. The second meaning of reductionism has to do with the significance of its genetic outfit for the ontogeny of an organism, i.e. its development from zygote to its (...)
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  • Commentary on Barron.David Hitchcock - unknown
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  • Rethinking Ethical Naturalism: The Implications of Developmental Systems Theory.Jared J. Kinggard - unknown
    Biological research has the capacity to inform ethical discussions. There are numerous questions about the nature of sexual orientation, intelligence, gender identity, etc., and many of these questions are commonly approached with the benefit of implicit or explicit biological commitments. The answers to these sorts of questions can have a powerful impact on social, ethical, and political positions. In this project I examine the prospect of naturalizing ethics under the umbrella of developmental systems theory (DST). If one is committed to (...)
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  • Editorial.Stephen Braude - 2012 - Journal of Scientific Exploration 26 (1).
    Composer and musicologist Nicolas Slonimsky published a fascinating and delightful book entitled Lexicon of Musical Invective: Critical Assaults on Composers Since Beethoven’s Time (Slonimsky 1965). The book is a collection of what Slonimsky called “biased, unfair, ill-tempered, and singularly unprophetic judgments” (p. 3) about famous composers and their works. We find, for example, the Gazette Musicale de Paris on August 1, 1847, saying of Verdi, “there has not yet been an Italian composer more incapable of producing what is commonly called (...)
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  • Response to Bousfield and LeBlond: Shooting Pipefish in a Barrel; or, Sauropterygian "Mega-Serpents" and Occam's Razor.Michael Anthony Woodley, Cameron McCormick & Darren Naish - 2012 - Journal of Scientific Exploration 26 (1).
    In their response to our recent article (Woodley et al., 2011), Bousfield and LeBlond (2011) argue on the basis of purported morphological and behavioral differences that the case for Hagelund's juvenile 'Cadborosaurus' being a pipefish is weakened into triviality. We note several major problems with their response and feel that their dismissive tone indicates a biased and unscientific approach to the investigation of this subject. Firstly, note that Bousfield and LeBlond (2011) thought that, by attempting to dismiss our pipefish identification, (...)
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  • Hans Drieschs argumente für den Vitalismus.Marcel Weber - 1999 - Philosophia Naturalis 36 (2):263-293.
    Ich rekonstruiere und kritisiere Hans Drieschs Argumentation für die Behauptung, daß biologischen Prozessen nur eine substanzdualistische Ontologie der belebten Materie (Vitalismus) gerecht werden kann. Meine Diagnose lautet, daß Drieschs Argumentation zwar logisch schlüssig ist bzw. durch leichte Modifikationen in eine logisch gültige Form gebracht werden kann, aber von empirisch unbegründeten, metaphysischen Prämissen über die Möglichkeiten eines energieumwandelnden Mechanismus ausgeht.
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  • Wenn Philosophen auf Biologen treffen: Über die Arbeit am Begriff im Dienste der Interdisziplinarität.Maria Kronfeldner - 2010 - Briefe Zur Interdisziplinarität 6:7-16.
    Kann die Entstehung neuer Ideen im Menschen und die daran anschließende Verbreitung dieser neuen Ideen durch die Anwendung eines Darwinistischen Evolutionsschemas erklärt werden? Der Prozess der Kreativität und der Veränderung wäre damit genauso wie die biologische Evolution im Sinne Darwins als ein sich ständig wiederholender, graduell kumulierender Prozess von Versuch und Irrtum zu verstehen. – Ist eine solche Erklärung möglich und könnte sie im Sinne einer allgemeinen Evolutionstheorie die Kluft zwischen Geistes-und Naturwissenschaften überbrücken helfen? Diese Fragen sollen Gegenstand einer systematischen, (...)
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  • Causal Selection versus Causal Parity in Biology: Relevant Counterfactuals and Biologically Normal Interventions.Marcel Weber - forthcoming - In Brian J. Hanley & C. Kenneth Waters (eds.), Philosophical Perspectives on Causal Reasoning in Biology. Minnesota Studies in Philosophy of Science. Vol. XXI. Minneapolis: University of Minnesota Press.
    Causal selection is the task of picking out, from a field of known causally relevant factors, some factors as elements of an explanation. The Causal Parity Thesis in the philosophy of biology challenges the usual ways of making such selections among different causes operating in a developing organism. The main target of this thesis is usually gene centrism, the doctrine that genes play some special role in ontogeny, which is often described in terms of information-bearing or programming. This paper is (...)
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  • Understanding Interests and Causal Explanation.Petri Ylikoski - 2001 - Dissertation, University of Helsinki
    This work consists of two parts. Part I will be a contribution to a philo- sophical discussion of the nature of causal explanation. It will present my contrastive counterfactual theory of causal explanation and show how it can be used to deal with a number of problems facing theories of causal explanation. Part II is a contribution to a discussion of the na- ture of interest explanation in social studies of science. The aim is to help to resolve some controversies (...)
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  • The referee’s dilemma. The ethics of scientific communities and game theory.Tomislav Bracanovic - 2002 - Prolegomena 1 (1):55-74.
    This article argues that various deviations from the basic principles of the scientific ethos – primarily the appearance of pseudoscience in scientific communities – can be formulated and explained using specific models of game theory, such as the prisoner’s dilemma and the iterated prisoner’s dilemma. The article indirectly tackles the deontology of scientific work as well, in which it is assumed that there is no room for moral skepticism, let alone moral anti-realism, in the ethics of scientific communities. Namely, on (...)
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  • The narrow and the normative.Karen Neander - manuscript
  • Téléologie et fonctions en biologie. Une approche non causale des explications téléofonctionnelles.Alberto Molina Pérez - 2017 - Dissertation, Universidad Autónoma de Madrid
    This dissertation focuses on teleology and functions in biology. More precisely, it focuses on the scientific legitimacy of teleofunctional attributions and explanations in biology. It belongs to a multi-faceted debate that can be traced back to at least the 1970s. One aspect of the debate concerns the naturalization of functions. Most authors try to reduce, translate or explain functions and teleology in terms of efficient causes so that they find their place in the framework of the natural sciences. Our approach (...)
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  • "Because" without "Cause": The Uses and Limits of Non-Causal Explanation.Jonathan Birch - 2008 - Dissertation, University of Cambridge
    In this BA dissertation, I deploy examples of non-causal explanations of physical phenomena as evidence against the view that causal models of explanation can fully account for explanatory practices in science. I begin by discussing the problems faced by Hempel’s models and the causal models built to replace them. I then offer three everyday examples of non-causal explanation, citing sticks, pilots and apples. I suggest a general form for such explanations, under which they can be phrased as inductive-statistical arguments incorporating (...)
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  • Explications for Engineering.Samantha Wakil - 2020 - Dissertation, University of North Carolina, Chapel Hill
    The conservative idea that it is a philosopher’s job to clarify common sense beliefs about ordinary concepts is being weeded out from the population and replaced by a revisionist agenda: philosophers should not merely describe but also analyze and suggest ways to improve our concepts. This project is called "conceptual engineering." The conceptual engineering literature is growing rapidly as more philosophers undertake normative conceptual work. However, many philosophers are practicing conceptual engineering untethered to an explicit methodology. Analyses addressing how we (...)
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  • Objetividad versus inteligibilidad de las funciones biológicas: La paradoja normativa y el autismo epistemológico de las ciencias modernas.Alberto Molina Pérez - 2006 - Ludus Vitalis 14 (26):39-67.
    Finality, design and purpose have started to be excluded from the language of the natural sciences since the XVIIth century. Darwin succeeded in excluding them from his theory of evolution appealing to a blind and mechanical natural selection. Today, the most usual definitions for the concept of biological function take for granted that functions: 1) are not dependent on a goal; 2) are not dependent on observers, but only on nature; 3) are explicable in causal terms, either with reference to (...)
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  • Laws, Models, and Theories in Biology: A Unifying Interpretation.Pablo Lorenzano - 2020 - In Lorenzo Baravalle & Luciana Zaterka (eds.), Life and Evolution, History, Philosophy and Theory of the Life Sciences. pp. 163-207.
    Three metascientific concepts that have been object of philosophical analysis are the concepts oflaw, model and theory. The aim ofthis article is to present the explication of these concepts, and of their relationships, made within the framework of Sneedean or Metatheoretical Structuralism (Balzer et al. 1987), and of their application to a case from the realm of biology: Population Dynamics. The analysis carried out will make it possible to support, contrary to what some philosophers of science in general and of (...)
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  • La Biología Evolucionaria Desenvolvimiental y el surgimiento de una nueva teoría de la evolución.Gustavo Caponi - 2016 - Metatheoria – Revista de Filosofía E Historia de la Ciencia 6:65--80.
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  • El holobionte/hologenoma como nivel de seleccion.Javier Suárez - 2021 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 36 (1):81-112.
    The units or levels of selection debate concerns the question of what kind of biological systems are stable enough that part of their evolution is a result of the process of natural selection acting at their level. Traditionally, the debate has concerned at least two different, though related, questions: the question of the level at which interaction with the environment occurs, and the question of the level at which reproduction occurs. In recent years, biologists and philosophers have discussed a new (...)
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  • 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 Sciences: The Case of Biology and History. Springer Verlag. 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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  • Die Architektur der Synthese. Entstehung und Philosophie der modernen Evolutionstheorie.Marcel Weber - 1996 - Dissertation, University of Konstanz
    This Ph.D. thesis provides a pilosophical account of the structure of the evolutionary synthesis of the 1930s and 40s. The first, more historical part analyses how classical genetics came to be integrated into evolutionary thinking, highlighting in particular the importance of chromosomal mapping of Drosophila strains collected in the wild by Dobzansky, but also the work of Goldschmidt, Sumners, Timofeeff-Ressovsky and others. The second, more philosophical part attempts to answer the question wherein the unity of the synthesis consisted. I argue (...)
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