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Technical Change and Scale Economies in an Engineering Production Function: The Case of Steam Electric Power

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  • Cowing, Thomas G

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  • Cowing, Thomas G, 1974. "Technical Change and Scale Economies in an Engineering Production Function: The Case of Steam Electric Power," Journal of Industrial Economics, Wiley Blackwell, vol. 23(2), pages 135-152, December.
  • Handle: RePEc:bla:jindec:v:23:y:1974:i:2:p:135-52
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    Cited by:

    1. Lam, Pun-Lee & Shiu, Alice, 2001. "A data envelopment analysis of the efficiency of China's thermal power generation," Utilities Policy, Elsevier, vol. 10(2), pages 75-83, June.
    2. Verdolini, Elena & Johnstone, Nick & Hascic, Ivan, 2011. "Technological Change, Fuel Efficiency and Carbon Intensity in Electricity Generation: A Cross-Country Empirical Study," Climate Change and Sustainable Development 120043, Fondazione Eni Enrico Mattei (FEEM).
    3. McNerney, James & Doyne Farmer, J. & Trancik, Jessika E., 2011. "Historical costs of coal-fired electricity and implications for the future," Energy Policy, Elsevier, vol. 39(6), pages 3042-3054, June.
    4. Zhai Jian & James Robert & Prokhorov Artem, 2022. "Technical and allocative inefficiency in production systems: a vine copula approach," Dependence Modeling, De Gruyter, vol. 10(1), pages 145-158, January.
    5. Park, Soo-Uk & Lesourd, Jean-Baptiste, 2000. "The efficiency of conventional fuel power plants in South Korea: A comparison of parametric and non-parametric approaches," International Journal of Production Economics, Elsevier, vol. 63(1), pages 59-67, January.
    6. Iglesias, Guillermo & Castellanos, Pablo & Seijas, Amparo, 2010. "Measurement of productive efficiency with frontier methods: A case study for wind farms," Energy Economics, Elsevier, vol. 32(5), pages 1199-1208, September.

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