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The diffusion of new steelmaking technology

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  • Crompton, Paul

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  • Crompton, Paul, 2001. "The diffusion of new steelmaking technology," Resources Policy, Elsevier, vol. 27(2), pages 87-95, June.
  • Handle: RePEc:eee:jrpoli:v:27:y:2001:i:2:p:87-95
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    References listed on IDEAS

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    1. Roger M. Heeler & Thomas P. Hustad, 1980. "Problems in Predicting New Product Growth for Consumer Durables," Management Science, INFORMS, vol. 26(10), pages 1007-1020, October.
    2. Sharon Oster, 1982. "The Diffusion of Innovation among Steel Firms: The Basic Oxygen Furnace," Bell Journal of Economics, The RAND Corporation, vol. 13(1), pages 45-56, Spring.
    3. Labson, B Stephen & Gooday, Peter, 1994. "Factors influencing the diffusion of electric arc furnace steelmaking technology," MPRA Paper 70666, University Library of Munich, Germany.
    4. Kwasnicki, Witold & Kwasnicka, Halina, 1995. "Long-term diffusion factors of technological development - an evolutionary model and case study," MPRA Paper 22262, University Library of Munich, Germany.
    5. Vijay Mahajan & Robert A. Peterson, 1978. "Innovation Diffusion in a Dynamic Potential Adopter Population," Management Science, INFORMS, vol. 24(15), pages 1589-1597, November.
    6. Frank M. Bass, 1969. "A New Product Growth for Model Consumer Durables," Management Science, INFORMS, vol. 15(5), pages 215-227, January.
    7. Irwin Bernhardt & Kenneth D. Mackenzie, 1972. "Some Problems in using Diffusion Models for New Products," Management Science, INFORMS, vol. 19(2), pages 187-200, October.
    8. Bruce Robinson & Chet Lakhani, 1975. "Dynamic Price Models for New-Product Planning," Management Science, INFORMS, vol. 21(10), pages 1113-1122, June.
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    Cited by:

    1. José Antonio Moya, 2016. "A Natural Analogy to the Diffusion of Energy-Efficient Technologies," Energies, MDPI, vol. 9(6), pages 1-14, June.
    2. Hidalgo, Ignacio & Szabo, Laszlo & Carlos Ciscar, Juan & Soria, Antonio, 2005. "Technological prospects and CO2 emission trading analyses in the iron and steel industry: A global model," Energy, Elsevier, vol. 30(5), pages 583-610.
    3. José Antonio Moya, 2017. "Where Diffusion of Clean Technologies and Barriers to Innovation Clash: Application to the Global Diffusion of the Electrical Arc Furnace," Energies, MDPI, vol. 10(1), pages 1-22, January.
    4. Ian Lange, 2007. "Environmental Policy Induced Input Substitution? The Case of Coking and Steam Coal," NCEE Working Paper Series 200710, National Center for Environmental Economics, U.S. Environmental Protection Agency, revised Dec 2007.
    5. Lund, Peter, 2006. "Market penetration rates of new energy technologies," Energy Policy, Elsevier, vol. 34(17), pages 3317-3326, November.
    6. Pardo, Nicolás & Moya, José Antonio, 2013. "Prospective scenarios on energy efficiency and CO2 emissions in the European Iron & Steel industry," Energy, Elsevier, vol. 54(C), pages 113-128.
    7. Ming-yuan Chen, 2005. "Technology adoption in response to changes in market conditions: Evidence from the US petroleum refining industry," Economics of Innovation and New Technology, Taylor & Francis Journals, vol. 14(8), pages 735-756.

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