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  1. The Nature of Selection: Evolutionary Theory in Philosophical Focus.Robert N. Brandon - 1986 - Philosophical Review 95 (4):614.
  • Optimal-design models and the strategy of model building in evolutionary biology.John Beatty - 1980 - Philosophy of Science 47 (4):532-561.
    The prevalence of optimality models in the literature of evolutionary biology is testimony to their popularity and importance. Evolutionary biologist R. C. Lewontin, whose criticisms of optimality models are considered here, reflects that "optimality arguments have become extremely popular in the last fifteen years, and at present represent the dominant mode of thought." Although optimality models have received little attention in the philosophical literature, these models are very interesting from a philosophical point of view. As will be argued, optimality models (...)
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  • The logical structure of classical genetics.Wolfgang Balzer & Pablo Lorenzano - 2000 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 31 (2):243-266.
    We present a reconstruction of so-called classical, formal or Mendelian genetics using a notation which we believe is more legible than that of earlier accounts, and lends itself easily to computer implementation, for instance in PROLOG. By drawing from, and emending, earlier work of Balzer and Dawe (1986,1997), the present account presents the three most important lines of development of classical genetics: the so-called Mendel's laws, linkage genetics and gene mapping, in the form of a theory-net. This shows that the (...)
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  • Special sciences (or: The disunity of science as a working hypothesis).J. A. Fodor - 1974 - Synthese 28 (2):97-115.
  • On the nature of the theory of evolution.Gerhard D. Wassermann - 1981 - Philosophy of Science 48 (3):416-437.
    This paper supplements an earlier one (Wassermann 1978b). Its views aim to reinforce those of Lewontin and other prominent evolutionists, but differ significantly from the opinions of some philosophers of science, notably Popper (1957) and Olding (1978). A basic distinction is made between 'laws' and 'theories of mechanisms'. The 'Theory of Evolution' is not characterized by laws, but is viewed here as a hypertheory which explains classifiable evolutionary phenomena in terms of subordinate classifiable theories of 'evolution-specific mechanisms' (ESMs), each of (...)
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  • The only necessity is verbal necessity.Bas C. van Fraassen - 1977 - Journal of Philosophy 74 (2):71-85.
  • The Structure and Confirmation of Evolutionary Theory.Elisabeth Anne Lloyd - 1994 - Princeton University Press.
    Traditionally a scientific theory is viewed as based on universal laws of nature that serve as axioms for logical deduction. In analyzing the logical structure of evolutionary biology, Elisabeth Lloyd argues that the semantic account is more appropriate and powerful. This book will be of interest to biologists and philosophers alike.
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  • The nature of selection: evolutionary theory in philosophical focus.Elliott Sober - 1984 - Chicago: University of Chicago Press.
    The Nature of Selection is a straightforward, self-contained introduction to philosophical and biological problems in evolutionary theory. It presents a powerful analysis of the evolutionary concepts of natural selection, fitness, and adaptation and clarifies controversial issues concerning altruism, group selection, and the idea that organisms are survival machines built for the good of the genes that inhabit them. "Sober's is the answering philosophical voice, the voice of a first-rate philosopher and a knowledgeable student of contemporary evolutionary theory. His book merits (...)
  • The Logical Structure of Mathematical Physics.C. A. Hooker - 1973 - Philosophy of Science 40 (1):130-131.
  • How evolutionary theory faces the reality.Matti Sintonen - 1991 - Synthese 89 (1):163 - 183.
    The paper sketches an account of explanatory practice in which explanations are viewed as answers to explanation-requiring questions. To avoid difficulties in previous proposals, the paper uses the structuralist account of theory structure, arguing that theories are complex and evolving entities formed around a conceptual core and a set of intended applications. The argument is that this view does better justice to theories which involve a number of different kinds of theory-elements to give narrative explanations. Theories are, among other things, (...)
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  • The Structure of Biological Science by Alexander Rosenberg. [REVIEW]Robert N. Brandon - 1987 - Journal of Philosophy 84 (4):224-227.
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  • The Structure and Confirmation of Evolutionary Theory.Elisabeth A. Lloyd - 1992 - Noûs 26 (1):132-133.
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  • The Genetic Basis of Evolutionary Change. R. C. Lewontin.Michael Ruse - 1976 - Philosophy of Science 43 (2):302-304.
  • The advancement of science: science without legend, objectivity without illusions.Philip Kitcher - 1993 - New York: Oxford University Press.
    During the last three decades, reflections on the growth of scientific knowledge have inspired historians, sociologists, and some philosophers to contend that scientific objectivity is a myth. In this book, Kitcher attempts to resurrect the notions of objectivity and progress in science by identifying both the limitations of idealized treatments of growth of knowledge and the overreactions to philosophical idealizations. Recognizing that science is done not by logically omniscient subjects working in isolation, but by people with a variety of personal (...)
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  • Special sciences.Jerry A. Fodor - 1974 - Synthese 28 (2):97-115.
  • The philosophy of biology.David L. Hull & Michael Ruse (eds.) - 1973 - New York: Oxford University Press.
    Drawing on work of the past decade, this volume brings together articles from the philosophy, history, and sociology of science, and many other branches of the biological sciences. The volume delves into the latest theoretical controversies as well as burning questions of contemporary social importance. The issues considered include the nature of evolutionary theory, biology and ethics, the challenge from religion, and the social implications of biology today (in particular the Human Genome Project).
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  • Conceptos y teorías en la ciencia.Jesús Mosterín - 1984
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  • Models for Genetics.Wolfgang Balzer & Christopher M. Dawe - 1997 - Peter Lang Publishing.
  • T-Theoretizität und Holismus.Ulrich Gähde - 1983 - Peter Lang Gmbh, Internationaler Verlag Der Wissenschaften.
    Als eine wesentliche Schwäche des strukturalistischen Theorienkonzepts musste die Vagheit erscheinen, mit der die Unterscheidung zwischen bezüglich einer Theorie theoretischen und nichttheoretischen Funktionen bisher belastet war. In der vorliegenden Untersuchung wird ein formal präzises, pragmatisch nichtrelativiertes Kriterium für T-Theoretizität vorgestellt. Erste Schritte zur Klärung seiner Bedeutung für die holistische Sichtweise erfahrungswissenschaftlicher Theorien werden unternommen.
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  • Discovery and explanation in biology and medicine.Kenneth F. Schaffner - 1993 - Chicago: University of Chicago Press.
  • The Structure of Biological Theories.Paul Thompson - 1989 - State University of New York Press.
    The central thesis of this book is that the semantic conception is a logical methodologically and heuristically richer and more accurate account of scientific theorizing, and in particular of theorizing in evolutionary biology, than the ...
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  • The Structure of Biological Science.Alexander Rosenberg - 1985 - New York: Cambridge University Press.
    This book provides a comprehensive guide to the conceptual methodological, and epistemological problems of biology, and treats in depth the major developments in molecular biology and evolutionary theory that have transformed both biology and its philosophy in recent decades. At the same time the work is a sustained argument for a particular philosophy of biology that unifies disparate issues and offers a framework for expectations about the future directions of the life sciences. The argument explores differences between autonomist and anti-autonomist (...)
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  • Philosophy of biological science.David L. Hull - 1974 - Englewood Cliffs, N.J.,: Prentice-Hall.
    Compares classic and contemporary theories of genetics and evolution and explores the role of teleological thought in biology.
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  • A Neo-Humean Perspective: Laws as Regularities.Norman Swartz - unknown
    I was seven or eight years old. In Hebrew school we had just learned the Aleph-Bet and were, haltingly, beginning to sound out words. As we spoke the ancient text, our teacher translated: "... And God said: 'Let there be light.' And there was light. ..."[note 2] Here was magic; here was the supernatural; here was the creation of the universe. I resonated to the story. I was filled with wonder, far more than had ever been elicited by any fairy (...)
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  • Classical genetics and the theory-net of genetics.Pablo Lorenzano - 2000 - In Joseph D. Sneed, Wolfgang Balzer & C.-Ulises Moulines (eds.), Structuralist Knowledge Representation: Paradigmatic Examples. Rodopi. pp. 75-251.
    This article presents a reconstruction of the so-called classical, formal or Mendelian genetics, which is intended to be more complete and adequate than existing reconstructions. This reconstruction has been carried out with the instruments, duly modified and extended with respect to the case under consideration, of the structuralist conception of theories. The so-called Mendel’s Laws, as well as linkage genetics and gene mapping are formulated in a precise manner while the global structure of genetics is represented as a theory-net. These (...)
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  • The Nature of Selection: Evolutionary Theory in Philosophical Focus.Elliott Sober - 1987 - British Journal for the Philosophy of Science 38 (3):397-399.
     
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  • The Logical Structure of Mathematical Physics.Joseph D. Sneed - 1975 - Erkenntnis 9 (3):423-436.
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  • Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - British Journal for the Philosophy of Science 46 (4):621-623.
     
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  • The Structure of Biological Science.Alexander Rosenberg - 1987 - British Journal for the Philosophy of Science 38 (1):119-121.
     
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  • An Architectonic for Science.Wolfgang Balzer, C. Ulises Moulines & Joseph D. Sneed - 1990 - Philosophy of Science 57 (2):349-350.
     
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  • The Structure of Biological Science.Alexander Rosenberg - 1986 - Journal of the History of Biology 19 (1):161-162.
     
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  • Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - Journal of the History of Biology 28 (1):172-174.
     
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  • An Architectonic for Science: The Structuralist Program.W. Balzer, C. U. Moulines & J. D. Sneed - 1991 - Synthese 86 (2):297-319.
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  • A Structural Description of Evolutionary Theory.Robert N. Brandon - 1980 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1980:427 - 439.
    The principle of natural selection is stated. It connects fitness values (actual reproductive success) with expected fitness values. The term 'adaptedness' is used for expected fitness values. The principle of natural selection explains differential fitness in terms of relative adaptedness. It is argued that this principle is absolutely central to Darwinian evolutionary theory. The empirical content of the principle of natural selection is examined. It is argued that the principle itself has no empirical biological content, but that the presuppositions of (...)
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  • Cuantificadores existenciales y principios-guía en las teorías físicas.Ulises Moulines - 1978 - Critica 10 (29):59-88.
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