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  1. What is life? & mind and matter: the physical aspect of the living cell.Erwin Schrödinger - 1974 - Cambridge University Press.
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  • (1 other version)The Logic of Life: A History of Heredity.François Jacob - 1989
    Looks at the way our understanding of biology has changed since the sixteenth century. This title describes four fundamental turning points in the perception of the structure of living things: the discoveries of the functions of organs, cells, chromosomes and genes, and DNA.
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  • (1 other version)The Logic of Life: A History of Heredity.François Jacob - 1993 - Princeton University Press.
    In The Logic of Life François Jacob looks at the way our understanding of biology has changed since the sixteenth century. He describes four fundamental turning points in the perception of the structure of living things: the discoveries of the functions of organs, cells, chromosomes and genes, and DNA.
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  • The Enzyme Theory and the Origin of Biochemistry.Robert Kohler Jr - 1973 - Isis 64:181-196.
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  • Who Wrote the Book of Life? Information and the Transformation of Molecular Biology, 1945–55.Lily E. Kay - 1995 - Science in Context 8 (4):609-634.
    The ArgumentThis paper focuses on the opening of a discursive space: the emergence of informational and scriptural representations of life and their self-negating consequences for the construction of biological meaning. It probes the notion of writing and the book of life and shows how molecular biology's claims to a status of language and texuality undermines its own objective of control. These textual significations were historically contingent. The informational representations of heredity and life were not an outcome of the internal cognitive (...)
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • Proteins, Enzymes, Genes: The Interplay of Chemistry and Biology.Joseph S. Fruton - 2001 - Journal of the History of Biology 34 (2):413-415.
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  • Changing order: replication and induction in scientific practice.Harry Collins - 1985 - Chicago: University of Chicago Press.
    This fascinating study in the sociology of science explores the way scientists conduct, and draw conclusions from, their experiments. The book is organized around three case studies: replication of the TEA-laser, detecting gravitational rotation, and some experiments in the paranormal. "In his superb book, Collins shows why the quest for certainty is disappointed. He shows that standards of replication are, of course, social, and that there is consequently no outside standard, no Archimedean point beyond society from which we can lever (...)
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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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  • Scientific pluralism and the Chemical Revolution.Martin Kusch - 2015 - Studies in History and Philosophy of Science Part A 49:69-79.
    In a number of papers and in his recent book, Is Water H₂O? Evidence, Realism, Pluralism (2012), Hasok Chang has argued that the correct interpretation of the Chemical Revolution provides a strong case for the view that progress in science is served by maintaining several incommensurable “systems of practice” in the same discipline, and concerning the same region of nature. This paper is a critical discussion of Chang's reading of the Chemical Revolution. It seeks to establish, first, that Chang's assessment (...)
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  • Beyond the Gene: Cytoplasmic Inheritance and the Struggle for Authority in Genetics.Jan Sapp - 1989 - Journal of the History of Biology 22 (2):369-370.
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  • Cell theory, specificity, and reproduction, 1837–1870.Staffan Müller-Wille - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):225-231.
    The cell is not only the structural, physiological, and developmental unit of life, but also the reproductive one. So far, however, this aspect of the cell has received little attention from historians and philosophers of biology. I will argue that cell theory had far-reaching consequences for how biologists conceptualized the reproductive relationships between germs and adult organisms. Cell theory, as formulated by Theodor Schwann in 1839, implied that this relationship was a specific and lawful one, that is, that germs of (...)
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  • Method as a Function of “Disciplinary Landscape”: C.D. Darlington and Cytology, Genetics and Evolution, 1932–1950.Oren Solomon Harman - 2006 - Journal of the History of Biology 39 (1):165-197.
    This article considers the reception of British cytogeneticist C.D. Darlington's controversial 1932 book, Recent Advances in Cytology. Darlington's cytogenetic work, and the manner in which he made it relevant to evolutionary biology, marked an abrupt shift in the status and role of cytology in the life sciences. By focusing on Darlington's scientific method -- a stark departure from anti-theoretical, empirical reasoning to a theoretical and speculative approach based on deduction from genetic first principles -- the article characterises the relationships defining (...)
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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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  • The Material Basis of Evolution.Richard Goldschmidt - 1941 - Philosophy of Science 8 (3):394-395.
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  • The Notions of Regulation, Information, and Language in the Writings of François Jacob.Hans-Jörg Rheinberger - 2006 - Biological Theory 1 (3):261-267.
    François Jacob is known as one of the key figures in the history of molecular biology. His elaboration, together with Jacques Monod, of the operon model and the basic features of the regulation of gene expression in bacteria, as well as the concept of genetic messenger, won him the Nobel Prize in 1965. Both notions were decisive for the novel imagery of molecular genetics in which the notion of information came to stand central. From a close reading, this article tries (...)
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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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  • The recent historiography of genetics.Ernst Mayr - 1973 - Journal of the History of Biology 6 (1):125-154.
    It is evident how much Olby and Provine have contributed to a better understanding of the emergence of genetics. It is equally evident, I believe, how many obscure issues still remain to be elucidated. Indeed, their volumes have raised as many new questions as they have answered old ones. In particular, the role of constructive as well as retarding contemporary concepts in the development of new generalizations still requires far more analysis. The somewhat independent trends of various national schools and (...)
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  • The Dynamics of Living Matter. [REVIEW]Jacques Loeb - 1907 - Ancient Philosophy (Misc) 17:475.
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  • What Makes Biology Unique? Considerations on the Autonomy of a Scientific Discipline.Ernst Mayr - 2005 - Journal of the History of Biology 38 (3):609-614.
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  • Contrasts in Scientific Style: Research Groups in the Chemical and Biochemical Sciences.Joseph S. Fruton - 1991 - Journal of the History of Biology 24 (3):546-548.
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  • Hopeful Heretic – Richard Goldschmidt’s Genetic Metaphors.Ehud Lamm - 2008 - History and Philosophy of the Life Sciences 30 (3-4):387-406.
    Richard Goldschmidt famously rejected the notion of atomic and corpuscular genes, arranged on the chromosome like beads-on-a-string. I provide an exegesis of Goldschmidt’s intuition by analyzing his repeated and extensive use of metaphorical language and analogies in his attempts to convey his notion of the nature of the genetic material and specifically the significance of chromosomal pattern. The paper concentrates on Goldschmidt’s use of metaphors in publications spanning 1940-1955. -/- .
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