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  1. Unipolar induction: a case study of the interaction between science and technology.Arthur I. Miller - 1981 - Annals of Science 38 (2):155-189.
    Unipolar induction, discovered in 1832 by Michael Faraday, is the case of electromagnetic induction in which a conductor and magnet are in relative rotatory motion. Attempts by scientists and engineers in the nineteenth and twentieth centuries to understand unipolar induction by using magnetic lines of force displayed striking national differences that influenced where the first largescale unipolar dynamo was built. This episode is described, as well as the effect of unipolar induction on Albert Einstein's thinking toward the special theory of (...)
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  • On physical lines of force.J. C. Maxwell - 2010 - Philosophical Magazine 90 (sup1):11-23.
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  • 19th Century Views on Induction in Moving Conductors.Ole Knudsen* - 1980 - Centaurus 24 (1):346-360.
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  • Faraday, Thomson, and the Concept of the Magnetic Field.David Gooding - 1980 - British Journal for the History of Science 13 (2):91-120.
    In June 1849 William Thomson wrote to Michael Faraday suggesting that the concept of a uniform magnetic field could be used to predict the motions of small magnetic and diamagnetic bodies. In his letter Thomson showed how Faraday's lines of magnetic force could represent the effect of the ‘conducting power’ for magnetic force of matter in the region of magnets. This was Thomson's extension to magnetism of an analogy between the mathematical descriptions of the distribution of static electricity and of (...)
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  • Oliver Heaviside, Maxwell's Apostle and Maxwellian Apostate.Jed Z. Buchwald - 1985 - Centaurus 28 (3):288-330.
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