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The Effect of Industrial Structure on Learning by Doing in Nuclear Power Plant Operation

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Cited by:

  1. Jeffrey Cummings, 2003. "Knowledge Sharing : A Review of the Literature," World Bank Publications - Books, The World Bank Group, number 19060, December.
  2. Lehmann, Paul, 2013. "Supplementing an emissions tax by a feed-in tariff for renewable electricity to address learning spillovers," Energy Policy, Elsevier, vol. 61(C), pages 635-641.
  3. Malte Schwoon, 2006. "Learning-by-doing, Learning Spillovers and the Diffusion of Fuel Cell Vehicles," Working Papers FNU-112, Research unit Sustainability and Global Change, Hamburg University, revised Jun 2006.
  4. Fabien A. Roques & William J. Nuttall & David M. Newbery & Richard de Neufville & Stephen Connors, 2006. "Nuclear Power: A Hedge against Uncertain Gas and Carbon Prices?," The Energy Journal, International Association for Energy Economics, vol. 0(Number 4), pages 1-24.
  5. Iyer, Gokul C. & Clarke, Leon E. & Edmonds, James A. & Hultman, Nathan E. & McJeon, Haewon C., 2015. "Long-term payoffs of near-term low-carbon deployment policies," Energy Policy, Elsevier, vol. 86(C), pages 493-505.
  6. Ron Jarmin, 1996. "Learning by Doing and Plant Characteristics," Working Papers 96-5, Center for Economic Studies, U.S. Census Bureau.
  7. Kun Shin Im & Kevin E. Dow & Varun Grover, 2001. "Research Report: A Reexamination of IT Investment and the Market Value of the Firm—An Event Study Methodology," Information Systems Research, INFORMS, vol. 12(1), pages 103-117, March.
  8. David, Paul A. & Rothwell, Geoffrey S., 1996. "Measuring standardization: An application to the American and French nuclear power industries," European Journal of Political Economy, Elsevier, vol. 12(2), pages 291-308, September.
  9. Lehmann, Paul & Gawel, Erik, 2013. "Why should support schemes for renewable electricity complement the EU emissions trading scheme?," Energy Policy, Elsevier, vol. 52(C), pages 597-607.
  10. Stavins, Robert & Jaffe, Adam & Newell, Richard, 2000. "Technological Change and the Environment," Working Paper Series rwp00-002, Harvard University, John F. Kennedy School of Government.
  11. Argote, Linda & Fahrenkopf, Erin, 2016. "Knowledge transfer in organizations: The roles of members, tasks, tools, and networks," Organizational Behavior and Human Decision Processes, Elsevier, vol. 136(C), pages 146-159.
  12. Blackman, Allen, 1999. "The Economics of Technology Diffusion: Implications for Climate Policy in Developing Countries," Discussion Papers 10574, Resources for the Future.
  13. Rothwell, Geoffrey & Rust, John, 1997. "On the Optimal Lifetime of Nuclear Power Plants," Journal of Business & Economic Statistics, American Statistical Association, vol. 15(2), pages 195-208, April.
  14. Daniel Z. Levin, 2000. "Organizational Learning and the Transfer of Knowledge: An Investigation of Quality Improvement," Organization Science, INFORMS, vol. 11(6), pages 630-647, December.
  15. Piazza, Alessandro & Perretti, Fabrizio, 2015. "Categorical Stigma and Firm Disengagement: Nuclear Power Generation in the United States, 1970-2000," OSF Preprints xqkdj, Center for Open Science.
  16. Paul Lehmann & Patrik Söderholm, 2018. "Can Technology-Specific Deployment Policies Be Cost-Effective? The Case of Renewable Energy Support Schemes," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 71(2), pages 475-505, October.
  17. Bossink, Bart, 2020. "Learning strategies in sustainable energy demonstration projects: What organizations learn from sustainable energy demonstrations," Renewable and Sustainable Energy Reviews, Elsevier, vol. 131(C).
  18. Richard A. Jensen, 2004. "Multiplant Firms and Innovation Adoption and Diffusion," Southern Economic Journal, John Wiley & Sons, vol. 70(3), pages 661-671, January.
  19. Sijm, Jos & Lehmann, Paul & Chewpreecha, Unnada & Gawel, Erik & Mercure, Jean-Francois & Pollitt, Hector & Strunz, Sebastian, 2014. "EU climate and energy policy beyond 2020: Are additional targets and instruments for renewables economically reasonable?," UFZ Discussion Papers 3/2014, Helmholtz Centre for Environmental Research (UFZ), Division of Social Sciences (ÖKUS).
  20. Alessandro Piazza & Fabrizio Perretti, 2015. "Categorical Stigma and Firm Disengagement: Nuclear Power Generation in the United States, 1970–2000," Organization Science, INFORMS, vol. 26(3), pages 724-742, June.
  21. Eunnyeong Heo & Seong-Yun Shin, 1999. "Estimating learning effects on nuclear power plants: A count data model with a varying time interval as a duration variable," Applied Economics Letters, Taylor & Francis Journals, vol. 6(10), pages 655-658.
  22. Joel A. C. Baum & Kristina B. Dahlin, 2007. "Aspiration Performance and Railroads’ Patterns of Learning from Train Wrecks and Crashes," Organization Science, INFORMS, vol. 18(3), pages 368-385, June.
  23. S. Taniguchi, Kazuhiro, 2022. "Why Fukushima? A diachronic and multilevel comparative institutional analysis of a nuclear disaster," Energy Policy, Elsevier, vol. 167(C).
  24. Paul L. Joskow, 1997. "Restructuring, Competition and Regulatory Reform in the U.S. Electricity Sector," Journal of Economic Perspectives, American Economic Association, vol. 11(3), pages 119-138, Summer.
  25. Karney, Daniel H., 2019. "Electricity market deregulation and environmental regulation: Evidence from U.S. nuclear power," Energy Economics, Elsevier, vol. 84(C).
  26. Alvarez, F. & Cerda, E., 2003. "Learning by doing in a T-period production planning: Analytical solution," European Journal of Operational Research, Elsevier, vol. 150(2), pages 353-369, October.
  27. Yang, Chi-Jen, 2011. "A comparison of the nuclear options for greenhouse gas mitigation in China and in the United States," Energy Policy, Elsevier, vol. 39(6), pages 3025-3028, June.
  28. Junginger, Martin & de Visser, Erika & Hjort-Gregersen, Kurt & Koornneef, Joris & Raven, Rob & Faaij, Andre & Turkenburg, Wim, 2006. "Technological learning in bioenergy systems," Energy Policy, Elsevier, vol. 34(18), pages 4024-4041, December.
  29. Brynjolfsson, Erik. & Hitt, Lorin M. & Massachusetts Institute of Technology. Industrial Performance Center., 1994. "Computers and economic growth : firm-level evidence," Working papers 3714-94. CISR WP ; no. 27, Massachusetts Institute of Technology (MIT), Sloan School of Management.
  30. Iyer, Gokul & Hultman, Nathan & Fetter, Steve & Kim, Son H., 2014. "Implications of small modular reactors for climate change mitigation," Energy Economics, Elsevier, vol. 45(C), pages 144-154.
  31. Jaffe, Adam B. & Newell, Richard G. & Stavins, Robert N., 2003. "Chapter 11 Technological change and the environment," Handbook of Environmental Economics, in: K. G. Mäler & J. R. Vincent (ed.), Handbook of Environmental Economics, edition 1, volume 1, chapter 11, pages 461-516, Elsevier.
  32. Koomey, Jonathan & Hultman, Nathan E., 2007. "A reactor-level analysis of busbar costs for US nuclear plants, 1970-2005," Energy Policy, Elsevier, vol. 35(11), pages 5630-5642, November.
  33. Kounetas, Kostas & Skuras, Dimitris & Tsekouras, Kostas, 2011. "Promoting energy efficiency policies over the information barrier," Information Economics and Policy, Elsevier, vol. 23(1), pages 72-84, March.
  34. Tracy R. Lewis & Huseyin Yildirim, 2002. "Managing Dynamic Competition," American Economic Review, American Economic Association, vol. 92(4), pages 779-797, September.
  35. Furukawa, Yuichi, 2007. "The protection of intellectual property rights and endogenous growth: Is stronger always better?," Journal of Economic Dynamics and Control, Elsevier, vol. 31(11), pages 3644-3670, November.
  36. Malte Schwoon, 2006. "A Tool to Optimize the Initial Distribution of Hydrogen Filling Stations," Working Papers FNU-110, Research unit Sustainability and Global Change, Hamburg University, revised Jun 2006.
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