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Introduction: The Modern Physical and Mathematical Sciences

Published online by Cambridge University Press:  28 March 2008

Mary Jo Nye
Affiliation:
Oregon State University
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Summary

The modern historical period from the Enlightenment to the mid-twentieth century has often been called an age of science, an age of progress or, using Auguste Comte’s term, an age of positivism.

Volume 5 in The Cambridge History of Science is largely a history of the nineteenth- and twentieth-century period in which mathematicians and scientists optimistically aimed to establish conceptual foundations and empirical knowledge for a rational, rigorous scientific understanding that is accurate, dependable, and universal. These scientists criticized, enlarged, and transformed what they already knew, and they expected their successors to do the same. Most mathematicians and scientists still adhere to these traditional aims and expectations and to the optimism identified with modern science.

By way of contrast, some writers and critics in the late twentieth century characterized the waning years of the twentieth century as a postmodern and postpositivist age. By this they meant, in part, that there is no acceptable master narrative for history as a story of progress and improvement grounded on scientific methods and values. They also meant, in part, that subjectivity and relativism are to be taken seriously both cognitively and culturally, thereby undermining claims for scientific knowledge as dependable and privileged knowledge.

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Publisher: Cambridge University Press
Print publication year: 2002

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References

Baber, Zaheer, The Science of Empire: Scientific Knowledge, Civilization, and Colonial Rule in India (Albany: State University of New York Press, 1996).Google Scholar
Bowler, Peter J., The Norton History of Environmental Sciences (New York: W. W. Norton, 1993).Google Scholar
Brock, William H., The Norton History of Chemistry (New York: W.W. Norton, 1992).Google Scholar
Cardwell, Donald, The Norton History of Technology (New York: W. W. Norton, 1995).Google Scholar
Cartwright, Nancy, The Dappled World: Essays on the Perimeter of Science (Cambridge: Cambridge University Press, 1999).CrossRefGoogle Scholar
Cohen, I. Bernard, Revolution in Science (Cambridge, Mass.: Harvard University Press, 1985).Google Scholar
Comte, Auguste, The Positive Philosophy of Auguste Comte trans. Harriet Martineau (London: G. Bell & Sons, 1896).Google Scholar
Deichmann, Ute, “The Expulsion of Jewish Chemists and Biochemists from Academia in Nazi Germany” (Perspectives on Science, 7 (1999).Google Scholar
Forman, Paul, “Weimar Culture Causality andQuantum Theory, 1918–1927: Adaptation by German Physicists and Mathematicians to a Hostile Intellectual Environment,” Historical Studies in the Physical Sciences, 3 (1971).CrossRefGoogle Scholar
Foucault, Michel, The Archaeology of Knowledge, trans. Smith, A. M. Sheridan (New York: Pantheon, 1972).Google Scholar
Fruton, Joseph S., Proteins, Enzymes, Genes: The Interplay of Chemistry and Biology (New Haven, Conn.: Yale University Press, 199).Google Scholar
Galison, Peter, How Experiments End (Chicago: University of Chicago Press, 1987).Google Scholar
Golinski, Jan, Making Natural Knowledge: Constructivism and the History of Science (Cambridge: Cambridge University Press, 1998).Google Scholar
Graham, Loren R., What Have We Learned about Science and Technology from the Russian Experience? (Stanford, Calif.: Stanford University Press, 1998).Google Scholar
Grattan-Guinness, Ivor, The Norton History of the Mathematical Sciences (New York: W. W. Norton, 1998).Google Scholar
Hacking, Ian, The Social Construction of What? (Cambridge, Mass.: Harvard University Press, 1999).Google Scholar
Hollinger, David A., “Science as a Weapon in Kulturkämpfe in the United States during and after World War II” in Science, Jews, and Secular Culture: Studies in Mid-Twentieth-Century American Intellectual History (Princeton, N.J.: Princeton University Press, 1996).Google Scholar
Knight, David M., The Age of Science: The Scientific World View in the Nineteenth Century (New York: Basil Blackwell, 1986).Google Scholar
Kragh, Helge, Quantum Generations: A History of Physics in the Twentieth Century (Princeton, N.J.: Princeton University Press, 1999).Google Scholar
Kuhn, Thomas S., The Structure of Scientific Revolutions (Chicago: University of Chicago Press, 1962).Google Scholar
Lyotard, Jean François, The Post-Modern Condition, trans. Bennington, Geoff and Massumi, Brian (Minneapolis: University ofMinnesota Press, 1984).Google Scholar
McCarty, Maclyn, The Transforming Principle: Discovering That Genes Are Made of DNA (New York: W. W. Norton, 195).Google Scholar
Nersessian, Nancy J., Thomas S. Kuhn, special issue of Configurations, 6, no.I (Winter 1998).Google Scholar
North, John, The Norton History of Astronomy and Cosmology (New York: W. W. Norton, 1995).Google Scholar
Olby, Robert, The Path to the Double Helix: The Discovery of DNA (London: Macmillan, 1974).Google Scholar
Penrose, Roger, The Emperor’s New Mind (New York: Oxford University Press, 1994).Google Scholar
Planck’s, Max, comment about generations in Scientific Autobiography and Other Papers, trans. Gaynor, F. (New York: Philosophical Library, 1949).Google Scholar
Porter, Roy, The Greatest Benefit to Mankind: Medical History of Humanity (New York: W. W. Norton, 1998).Google Scholar
Pyenson, Lewis and Sheets-Pyenson, Susan, Servants of Nature: A History of Scientific Institutions, Enterprises, and Sensibilities (New York: W. W. Norton, 1999).Google Scholar
Pyenson, Lewis, CivilizingMissions: Exact Sciences and French Overseas Expansion, 1830–1940 (Baltimore: Johns Hopkins University Press, 1993).Google Scholar
Sime, Ruth L., Lise Meitner: A Life in Physics (Berkeley: University of California Press, 1996).Google Scholar
Toulmin, Stephen, Cosmopolis: The Hidden Agenda of Modernity (New York: Free Press, 1990).Google Scholar
Wang, Jessica, American Science in an Age of Anxiety: Scientists, Anticommunism and the Cold War (Durham: University of North Carolina Press, 1999).Google Scholar
Weinberg, Steven, Dreams of a Final Theory (New York: Pantheon, 1992).Google Scholar
Weinberg, Steven, “Sokal’s Hoax,” New York Review of Books, 8 August 1996).

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