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Morphological analysis, diffusion and lockout of technologies: Ferrous casting in France and the FRG

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  • Foray, Dominique
  • Grubler, Arnulf

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  • Foray, Dominique & Grubler, Arnulf, 1990. "Morphological analysis, diffusion and lockout of technologies: Ferrous casting in France and the FRG," Research Policy, Elsevier, vol. 19(6), pages 535-550, December.
  • Handle: RePEc:eee:respol:v:19:y:1990:i:6:p:535-550
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    Cited by:

    1. Esmaelian, Majid & Tavana, Madjid & Di Caprio, Debora & Ansari, Reza, 2017. "A multiple correspondence analysis model for evaluating technology foresight methods," Technological Forecasting and Social Change, Elsevier, vol. 125(C), pages 188-205.
    2. Paul Windrum, 2003. "Unlocking a Lock-in: Towards a Model of Technological Succession," Chapters, in: Pier Paolo Saviotti (ed.), Applied Evolutionary Economics, chapter 11, Edward Elgar Publishing.
    3. Silverberg, G. & Verspagen, B., 2003. "Brewing the future: stylized facts about innovation and their confrontation with a percolation model," Working Papers 03.06, Eindhoven Center for Innovation Studies.
    4. Roberto Fontana, 2003. "Rapid Technical Change and the Speed of Lock-in: Standard Battles in the Local Area Network Industry in the 1990s," KITeS Working Papers 146, KITeS, Centre for Knowledge, Internationalization and Technology Studies, Universita' Bocconi, Milano, Italy, revised Jul 2003.
    5. Islas, Jorge, 1997. "Getting round the lock-in in electricity generating systems: the example of the gas turbine," Research Policy, Elsevier, vol. 26(1), pages 49-66, March.
    6. Cristina Páez-Avilés & Frank J. Rijnsoever & Esteve Juanola-Feliu & Josep Samitier, 2018. "Multi-disciplinarity breeds diversity: the influence of innovation project characteristics on diversity creation in nanotechnology," The Journal of Technology Transfer, Springer, vol. 43(2), pages 458-481, April.
    7. Gerald Silverberg & Bart Verspagen, 2007. "Self-organization of R&D search in complex technology spaces," Journal of Economic Interaction and Coordination, Springer;Society for Economic Science with Heterogeneous Interacting Agents, vol. 2(2), pages 195-210, December.
    8. Foray, Dominique, 1997. "The dynamic implications of increasing returns: Technological change and path dependent inefficiency," International Journal of Industrial Organization, Elsevier, vol. 15(6), pages 733-752, October.
    9. Franco Malerba, 2005. "Sectoral systems of innovation: a framework for linking innovation to the knowledge base, structure and dynamics of sectors," Economics of Innovation and New Technology, Taylor & Francis Journals, vol. 14(1-2), pages 63-82.
    10. Ruttan, Vernon W., 1996. "Sources Of Technical Change: Induced Innovation, Evolutionary Theory And Path Dependence," Bulletins 12974, University of Minnesota, Economic Development Center.
    11. Silvia Massini, 2004. "The diffusion of mobile telephony in Italy and the UK: an empirical investigation," Economics of Innovation and New Technology, Taylor & Francis Journals, vol. 13(3), pages 251-277.
    12. Bartzokas, Anthony & Yarime, Masaru, 1997. "Technology Trends in Pollution-Intensive Industries: A Review of Sectoral Trends," UNU-INTECH Discussion Paper Series 1997-06, United Nations University - INTECH.
    13. van Rijnsoever, Frank J. & van den Berg, Jesse & Koch, Joost & Hekkert, Marko P., 2015. "Smart innovation policy: How network position and project composition affect the diversity of an emerging technology," Research Policy, Elsevier, vol. 44(5), pages 1094-1107.
    14. Frenken, Koen & Leydesdorff, Loet, 2000. "Scaling trajectories in civil aircraft (1913-1997)," Research Policy, Elsevier, vol. 29(3), pages 331-348, March.
    15. Sarkar, Jayati, 1998. "Technological Diffusion: Alternative Theories and Historical Evidence," Journal of Economic Surveys, Wiley Blackwell, vol. 12(2), pages 131-176, April.
    16. Malerba, Franco, 2002. "Sectoral systems of innovation and production," Research Policy, Elsevier, vol. 31(2), pages 247-264, February.

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