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  1. Aspects of Scientific Explanation and Other Essays in the Philosophy of Science.Carl Gustav Hempel - 1965 - New York: The Free Press.
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  • Darwinian Populations and Natural Selection.Peter Godfrey-Smith - 2009 - Oxford, GB: Oxford University Press.
    The book presents a new way of understanding Darwinism and evolution by natural selection, combining work in biology, philosophy, and other fields.
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  • (1 other version)Evolution – the Extended Synthesis.Massimo Pigliucci & Gerd B. Muller (eds.) - 2010 - MIT Press.
    In the six decades since the publication of Julian Huxley's Evolution: The Modern Synthesis, spectacular empirical advances in the biological sciences have been accompanied by equally significant developments within the core theoretical framework of the discipline. As a result, evolutionary theory today includes concepts and even entire new fields that were not part of the foundational structure of the Modern Synthesis. In this volume, sixteen leading evolutionary biologists and philosophers of science survey the conceptual changes that have emerged since Huxley's (...)
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  • Explanatory unification and the causal structure of the world.Philip Kitcher - 1962 - In Philip Kitcher & Wesley C. Salmon (eds.), Scientific Explanation. Univ of Minnesota Pr. pp. 410-505.
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  • Dynamics of Reason.Michael Friedman - 2001 - Philosophy and Phenomenological Research 68 (3):702-712.
    This book introduces a new approach to the issue of radical scientific revolutions, or "paradigm-shifts," given prominence in the work of Thomas Kuhn. The book articulates a dynamical and historicized version of the conception of scientific a priori principles first developed by the philosopher Immanuel Kant. This approach defends the Enlightenment ideal of scientific objectivity and universality while simultaneously doing justice to the revolutionary changes within the sciences that have since undermined Kant's original defense of this ideal. Through a modified (...)
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  • Biology’s First Law: The Tendency for Diversity and Complexity to Increase in Evolutionary Systems.Daniel W. McShea & Robert N. Brandon - 2010 - University of Chicago Press.
    1 The Zero-Force Evolutionary Law 2 Randomness, Hierarchy, and Constraint 3 Diversity 4 Complexity 5 Evidence, Predictions, and Tests 6 Philosophical Foundations 7 Implications.
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  • (3 other versions)Scientific Explanation.P. Kitcher & W. C. Salmon - 1992 - British Journal for the Philosophy of Science 43 (1):85-98.
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  • What Darwin got wrong.Jerry A. Fodor - 2010 - New York: Farrar, Straus and Giroux. Edited by Massimo Piattelli-Palmarini.
    This book dares to challenge natural selection--not in the name of religion but in the name of good science. Most scientists are so terrified of religious attacks on the theory of evolution that it is never examined critically. There are significant scientific and philosophical problems with the theory of natural selection. Darwin claimed the factors that determine the course of evolution are very largely environmental. Empirical results in biology are increasingly calling this thesis into question. The authors show that Darwinism (...)
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  • What makes biology unique?: considerations on the autonomy of a scientific discipline.Ernst Mayr - 2004 - New York: Cambridge University Press.
    This collection of revised and new essays argues that biology is an autonomous science rather than a branch of the physical sciences. Ernst Mayr, widely considered the most eminent evolutionary biologist of the 20th century, offers insights on the history of evolutionary thought, critiques the conditions of philosophy to the science of biology, and comments on several of the major developments in evolutionary theory. Notably, Mayr explains that Darwin's theory of evolution is actually five separate theories, each with its own (...)
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  • (1 other version)An Architectonic for Science.Wolfgang Balzer, C. Ulises Moulines & Joseph D. Sneed - 1990 - Philosophy of Science 57 (2):349-350.
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  • An introduction to the philosophy of science.Rudolf Carnap - 1974 - New York: Dover Publications. Edited by Martin Gardner.
    Stimulating, thought-provoking text by one of the 20th century’s most creative philosophers clearly and discerningly makes accessible such topics as probability, measurement and quantitative language, structure of space, causality and determinism, theoretical laws and concepts and much more. "...the best book available for the intelligent reader who wants to gain some insight into the nature of contemporary philosophy of science."—Choice.
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  • (1 other version)An Architectonic for Science. The Structuralist Program.W. Balzer, C. U. Moulines & J. D. Sneed - 1990 - Erkenntnis 33 (3):399-410.
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  • Darwinism Evolving: Systems Dynamics and the Genealogy of Natural Selection.Daniel J. Depew & Bruce H. Weber - 1996 - British Journal for the Philosophy of Science 47 (4):640-646.
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  • (1 other version)An Architectonic for Science; The Structuralist Program.Wolfgang Balzer, C. Ulises Moulines & Joseph D. Sneed - 1990 - Studia Logica 49 (1):153-155.
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  • Concepts of Force : A Study in the Foundations of Dynamics.Max Jammer - 1962 - Dover Publications.
    Both historical treatment and critical analysis, this work by a noted physicist takes a fascinating look at a fundamental of physics, tracing its development from ancient to modern times.
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  • La teoría de la selección natural. Una exploración metacientífica.Santiago Ginnobili - 2018 - Bernal: Universidad Nacional de Quilmes.
    Este libro analiza y reconstruye una de las teorías científicas que más discusiones han provocado en el ámbito de la biología, de la filosofía y de la sociedad: la teoría de la selección natural. Esta teoría, que ocupa un lugar central en la biología evolutiva, se encuentra en el centro de la revolución darwiniana, uno de los cambios más radicales ocurridos en la historia de la ciencia y, sin dudas, uno de los que más consecuencias han tenido sobre la ciencia (...)
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  • Causal Foundations of Evolutionary Genetics.Jun Otsuka - 2016 - British Journal for the Philosophy of Science 67 (1):247-269.
    The causal nature of evolution is one of the central topics in the philosophy of biology. The issue concerns whether equations used in evolutionary genetics point to some causal processes or purely phenomenological patterns. To address this question the present article builds well-defined causal models that underlie standard equations in evolutionary genetics. These models are based on minimal and biologically plausible hypotheses about selection and reproduction, and generate statistics to predict evolutionary changes. The causal reconstruction of the evolutionary principles shows (...)
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  • One equation to rule them all: a philosophical analysis of the Price equation.Victor J. Luque - 2017 - Biology and Philosophy 32 (1):97-125.
    This paper provides a philosophical analysis of the Price equation and its role in evolutionary theory. Traditional models in population genetics postulate simplifying assumptions in order to make the models mathematically tractable. On the contrary, the Price equation implies a very specific way of theorizing, starting with assumptions that we think are true and then deriving from them the mathematical rules of the system. I argue that the Price equation is a generalization-sketch, whose main purpose is to provide a unifying (...)
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  • Concepts of Force: A Study in the Foundations of Dynamics.Max Jammer - 1957 - British Journal for the Philosophy of Science 10 (37):69-73.
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  • Pluralidad y recursión.C. U. Moulines - 1991
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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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  • Causal Foundations of Evolutionary Genetics.Jun Otsuka - 2014 - British Journal for the Philosophy of Science (1):axu039.
    The causal nature of evolution is one of the central topics in the philosophy of biology. The issue concerns whether equations used in evolutionary genetics point to some causal processes or purely phenomenological patterns. To address this question the present article builds well-defined causal models that underlie standard equations in evolutionary genetics. These models are based on minimal and biologically plausible hypotheses about selection and reproduction, and generate statistics to predict evolutionary changes. The causal reconstruction of the evolutionary principles shows (...)
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  • Using causal models to integrate proximate and ultimate causation.Jun Otsuka - 2015 - Biology and Philosophy 30 (1):19-37.
    Ernst Mayr’s classical work on the nature of causation in biology has had a huge influence on biologists as well as philosophers. Although his distinction between proximate and ultimate causation recently came under criticism from those who emphasize the role of development in evolutionary processes, the formal relationship between these two notions remains elusive. Using causal graph theory, this paper offers a unified framework to systematically translate a given “proximate” causal structure into an “ultimate” evolutionary response, and illustrates evolutionary implications (...)
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  • Philosophy and the Foundations of Dynamics.Lawrence Sklar - 2012 - Cambridge: Cambridge University Press.
    Although now replaced by more modern theories, classical mechanics remains a core foundational element of physical theory. From its inception, the theory of dynamics has been riddled with conceptual issues and differing philosophical interpretations and throughout its long historical development, it has shown subtle conceptual refinement. The interpretive program for the theory has also shown deep evolutionary change over time. Lawrence Sklar discusses crucial issues in the central theory from which contemporary foundational theories are derived and shows how some core (...)
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  • Evolutionary and Newtonian Forces.Christopher Hitchcock & Joel D. Velasco - 2014 - Ergo: An Open Access Journal of Philosophy 1:39-77.
    A number of recent papers have criticized what they call the dynamical interpretation of evolutionary theory found in Elliott Sober’s The Nature of Selection. Sober argues that we can think of evolutionary theory as a theory of forces analogous to Newtonian mechanics. These critics argue that there are several important disanalogies between evolutionary and Newtonian forces: Unlike evolutionary forces, Newtonian forces can be considered in isolation, they have source laws, they compose causally in a straightforward way, and they are intermediate (...)
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  • What is the Status of the Hardy-Weinberg Law within Population Genetics?Pablo Lorenzano - 2014 - Vienna Circle Institute Yearbook 17:159-172.
    The aim of this paper is to further develop van Fraassen’s diagnosis, expanding a previous analysis of the fundamental law of classical genetics and the status of the so-called ‘Mendel’s laws’.6 According to this diagnosis the Hardy-Weinberg law: 1) cannot be considered as axiom (or fundamental law) for classical population genetics, since it is a law that describes an equilibrium that 2) holds only under certain special conditions, and 3) only determines a subclass of models, 4) whose generalized form (and (...)
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  • (1 other version)Okasha’s Unintended Argument for Toolbox Theorizing.C. Kenneth Waters - 2011 - Philosophy and Phenomenological Research 82 (1):232-240.
    Okasha claims at the outset of his book "Evolution and the Levels of Selection" that the Price equation lays bare the fundamentals underlying all selection phenomena. However, the thoroughness of his subsequent analysis of multi-level selection theories leads him to abandon his fundamentalist commitments. At critical points he invokes cost benefit analyses that sometimes favors the Price approach and sometimes the contextual approach, sometimes favors MLS1 and sometimes MLS2. And although he doesn’t acknowledge it, even the Price approach breaks down (...)
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  • Fundamental laws and laws of biology.Pablo Lorenzano - 2006 - In Gerhard Ernst & Karl-Georg Niebergall (eds.), Philosophie der Wissenschaft – Wissenschaft der Philosophie. Festschrift für C.Ulises Moulines zum 60. Geburstag. Mentis. pp. 129-155.
    In this paper, I discuss the problem of scientific laws in general and laws of biology in particular. After reviewing the debate around the existence of laws in biology, I examine the subject in the light of the structuralist notion of a fundamental law and argue for the law of matching as the fundamental law of genetics.
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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. Springer. 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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  • (1 other version)Okasha’s Unintended Argument for Toolbox Theorizing.C. Kenneth Waters - 2011 - Philosophy and Phenomenological Research 82 (1):232-240.
    Okasha claims at the outset of his book "Evolution and the Levels of Selection" (2006) that the Price equation lays bare the fundamentals underlying all selection phenomena. However, the thoroughness of his subsequent analysis of multi-level selection theories leads him to abandon his fundamentalist commitments. At critical points he invokes cost benefit analyses that sometimes favors the Price approach and sometimes the contextual approach, sometimes favors MLS1 and sometimes MLS2. And although he doesn’t acknowledge it, even the Price approach breaks (...)
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  • Towards a Pricean foundation for cultural evolutionary theory.Lorenzo Baravalle & Victor J. Luque - 2022 - Theoria 37 (2):209-231.
    The Price equation is currently considered one of the fundamental equations —or even the fundamental equation— of evolution. In this article, we explore the role of this equation within cultural evolutionary theory. More specifically, we use it to account for the explanatory power and the theoretical structure of a certain generalised version of dual-inheritance theory. First, we argue that, in spite of not having a definite empirical content, the Price equation offers a suitable formalisation of the processes of cultural evolution, (...)
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  • 10How Many Levels Are There? How Insights from Evolutionary Transitions in Individuality Help Measure the Hierarchical Complexity of Life.Carl Simpson - 2011 - In Brett Calcott & Kim Sterelny (eds.), The Major Transitions in Evolution Revisited. MIT Press.
    This chapter argues that the multilevel selection -1 to MLS-2 model of a major transition is incomplete because it overlooks a crucial component of fitness. It addresses that the evolution of individuality literature has failed to account for expansive fitness and that expansive fitness differences play an important role in the transition to regimes sensitive to the fitness of the corporate agent. It discusses multilevel evolution during the three phases of transitions in individuality: the aggregate phase, the group phase, and (...)
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  • Are ecology and evolutionary biology “soft” sciences?Massimo Pigliucci - 2002 - Annales Zoologici Finnici 39:87-98.
    Research in ecology and evolutionary biology (evo-eco) often tries to emulate the “hard” sciences such as physics and chemistry, but to many of its practitioners feels more like the “soft” sciences of psychology and sociology. I argue that this schizophrenic attitude is the result of lack of appreciation of the full consequences of the peculiarity of the evo-eco sciences as lying in between a-historical disciplines such as physics and completely historical ones as like paleontology. Furthermore, evo-eco researchers have gotten stuck (...)
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  • Links, Loops, and the Global Structure of Science.C. U. Moulines - 1984 - Philosophia Naturalis 21 (2/4):254-265.
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  • Theoretical Integration, Cooperation, and Theories as Tracking Devices.James Griesemer - 2006 - Biological Theory 1 (1):4-7.
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  • Bibliography of structuralism II (1989?1994 and Additions).W. Diederich, A. Ibarra & T. Mormann - 1994 - Erkenntnis 41 (3):403-418.
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  • Pluralidad y recursión. Estudios epistemológicos.Carlos Ulises Moulines - 1994 - Critica 26 (76/77):248-266.
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  • Metatheoretical Structuralism: a General Program for Analyzing Science. [REVIEW]C. U. Moulines - 2010 - Axiomathes 20 (2-3):255-268.
    In spite of the ‘experimental turn’ now fashionable in the philosophy of science, the question of the structure and identity criteria of scientific theories continues to be a central issue for the philosophical analysis of empirical science. We need a precise metatheory of empirical theories to deal with this issue. Metatheoretical structuralism appears to offer the most adequate approach in this sense so far. First, some basic intuitions about what empirical theories are, and how they are structured, are laid out. (...)
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