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  1. The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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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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  • The Growth of Biological Thought: Diversity, Evolution, and Inheritance. [REVIEW]Ernst Mayr - 1985 - Journal of the History of Biology 18 (1):145-153.
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  • Genes.Philip Kitcher - 1982 - British Journal for the Philosophy of Science 33 (4):337-359.
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  • An exploration of young children's understandings of genetics concepts from ontological and epistemological perspectives.Grady Venville, Susan J. Gribble & Jennifer Donovan - 2005 - Science Education 89 (4):614-633.
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  • From the reaktionsNorm to the adaptive Norm: The Norm of reaction, 1909–1960. [REVIEW]Sahotra Sarkar - 1999 - Biology and Philosophy 14 (2):235-252.
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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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  • The Structure of Biological Science.Fred Gifford - 1991 - Noûs 25 (1):123-125.
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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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  • Book Review: Elof Axel Carlson, Mendel's Legacy: The Origin of Classical Genetics. [REVIEW]Elof Axel Carlson - 2004 - Journal of the History of Biology 37 (3):590-591.
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  • The Growth of Biological Thought: Diversity, Evolution, and Inheritance.Ernst Mayr - 1982 - Harvard University Press.
    Explores the development of the ideas of evolutionary biology, particularly as affected by the increasing understanding of genetics and of the chemical basis of inheritance.
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  • The triple helix: gene, organism, and environment.Richard C. Lewontin - 2000 - Cambridge, Mass.: Harvard University Press. Edited by Richard C. Lewontin.
    One of our most brilliant evolutionary biologists, Richard Lewontin has also been a leading critic of those--scientists and non-scientists alike--who would misuse the science to which he has contributed so much. In The Triple Helix, Lewontin the scientist and Lewontin the critic come together to provide a concise, accessible account of what his work has taught him about biology and about its relevance to human affairs. In the process, he exposes some of the common and troubling misconceptions that misdirect and (...)
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  • The Century of the Gene.Evelyn Fox Keller - 2001 - Journal of the History of Biology 34 (3):613-615.
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  • A cause of ahistorical science teaching: use of hybrid models.Rosaria Justi & John Gilbert - 1999 - Science Education 83 (2):163-177.
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  • Essay Review: The Tormenting Desire for Unity.Ernst Mayr & Edward O. Wilson - 1999 - Journal of the History of Biology 32 (2):385-394.
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  • The Triple Helix: Gene, Organism, and Environment.Richard Lewontin - 2000 - Journal of the History of Biology 33 (3):611-612.
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  • Molecular biology and the unity of science.Harold Kincaid - 1990 - Philosophy of Science 57 (4):575-593.
    Advances in molecular biology have generally been taken to support the claim that biology is reducible to chemistry. I argue against that claim by looking in detail at a number of central results from molecular biology and showing that none of them supports reduction because (1) their basic predicates have multiple realizations, (2) their chemical realization is context-sensitive and (3) their explanations often presuppose biological facts rather than eliminate them. I then consider the heuristic and confirmational implications of irreducibility and (...)
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  • Modeling Theory in Science Education.Ibrahim A. Halloun - 2006 - Springer.
    This book is the culmination of over twenty years of work toward a pedagogical theory that promotes experiential learning of model-laden theory and inquiry in science.
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  • The Necessity of Making Visible Concepts with Multiple Meanings in Science Education: The Use of the Gene Concept in a Biology Textbook.Veronica S. Flodin - 2009 - Science & Education 18 (1):73-94.
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