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A New Proof of Uzawa's Steady-State Growth Theorem

Citations

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Cited by:

  1. Miguel A León-Ledesma & Mathan Satchi, 2019. "Appropriate Technology and Balanced Growth," The Review of Economic Studies, Review of Economic Studies Ltd, vol. 86(2), pages 807-835.
  2. Gregory Casey & Ryo Horii, 2024. "A Generalized Uzawa Growth Theorem," Journal of Political Economy Macroeconomics, University of Chicago Press, vol. 2(2), pages 336-373.
  3. Dongya Koh & Raül Santaeulàlia-Llopis, 2017. "Countercyclical Elasticity of Substitution," Working Papers 946, Barcelona School of Economics.
  4. Ekkehart Schlicht, 2016. "Directed Technical Change and Capital Deepening: A Reconsideration of Kaldor's Technical Progress Function," Metroeconomica, Wiley Blackwell, vol. 67(1), pages 119-151, February.
  5. Growiec, Jakub, 2010. "Knife-edge conditions in the modeling of long-run growth regularities," Journal of Macroeconomics, Elsevier, vol. 32(4), pages 1143-1154, December.
  6. Roberto Veneziani & Luca Zamparelli & Daniele Tavani & Luca Zamparelli, 2017. "Endogenous Technical Change In Alternative Theories Of Growth And Distribution," Journal of Economic Surveys, Wiley Blackwell, vol. 31(5), pages 1272-1303, December.
  7. Irmen, Andreas, 2018. "A Generalized Steady-State Growth Theorem," Macroeconomic Dynamics, Cambridge University Press, vol. 22(4), pages 779-804, June.
  8. Gregory Casey, 2018. "Technology-Driven Unemployment," 2018 Meeting Papers 302, Society for Economic Dynamics.
  9. Vladimir D. Matveenko & Alexei V. Korolev, 2011. "What Is Common In Different Economic Growth Models?," DEGIT Conference Papers c016_075, DEGIT, Dynamics, Economic Growth, and International Trade.
  10. Dorota Ciołek & Tomasz Brodzicki, 2016. "Determinanty produktywności polskich powiatów," Bank i Kredyt, Narodowy Bank Polski, vol. 47(5), pages 463-494.
  11. Miguel A. Leon-Ledesma & Mathan Satchi, 2010. "A Note on Balanced Growth with a less than unitary Elasticity of Substitution," Studies in Economics 1007, School of Economics, University of Kent.
  12. Neustroev, Dmitry, 2013. "The Uzawa-Lucas Growth Model with Natural Resources," MPRA Paper 52937, University Library of Munich, Germany.
  13. Pengfei Zhang, 2018. "Endogenous sector-biased technical change and perpetual and transient structural change," Journal of Economics, Springer, vol. 123(3), pages 195-223, April.
  14. repec:nbp:nbpbik:v:47:y:2016:i:6:p:463-494 is not listed on IDEAS
  15. Gene M. Grossman & Elhanan Helpman & Ezra Oberfield & Thomas Sampson, 2017. "Balanced Growth Despite Uzawa," American Economic Review, American Economic Association, vol. 107(4), pages 1293-1312, April.
  16. Aiyar, Shekhar & Dalgaard, Carl-Johan, 2009. "Accounting for productivity: Is it OK to assume that the world is Cobb-Douglas?," Journal of Macroeconomics, Elsevier, vol. 31(2), pages 290-303, June.
  17. Gregory Casey & Ryo Horii, 2019. "A Multi-factor Uzawa Growth Theorem and Endogenous Capital-Augmenting Technological Change," ISER Discussion Paper 1051, Institute of Social and Economic Research, Osaka University.
  18. Jones, C.I., 2016. "The Facts of Economic Growth," Handbook of Macroeconomics, in: J. B. Taylor & Harald Uhlig (ed.), Handbook of Macroeconomics, edition 1, volume 2, chapter 0, pages 3-69, Elsevier.
  19. Trew, Alex, 2014. "Finance And Balanced Growth," Macroeconomic Dynamics, Cambridge University Press, vol. 18(4), pages 883-898, June.
  20. Sriket, Hongsilp & Suen, Richard M.H., 2022. "Sources of economic growth in models with non-renewable resources," Journal of Macroeconomics, Elsevier, vol. 72(C).
  21. Andreas Irmen, 2013. "Adjustment costs in a variant of Uzawa's steady-state growth theorem," Economics Bulletin, AccessEcon, vol. 33(4), pages 2860-2873.
  22. Miguel A. Leon-Ledesma & Mathan Satchi, 2015. "Appropriate Technology and the Labour Share," Studies in Economics 1505, School of Economics, University of Kent, revised Nov 2016.
  23. Irmen, Andreas, 2011. "Steady-state growth and the elasticity of substitution," Journal of Economic Dynamics and Control, Elsevier, vol. 35(8), pages 1215-1228, August.
  24. repec:wvu:wpaper:10-06 is not listed on IDEAS
  25. Robinson, Sherman & van Meijl, Hans & Valin, Hugo & Willenbockel, Dirk & Fujimori, Shinichiro & Masui, Toshihiko & Sands, Ron & Wise, Marshall & Calvin, Katherine & Havlik, Petr & d'Croz, Daniel Mason, 2013. "Comparing PE and CGE Supply-Side Specifications in Models of the Global Food System," Conference papers 332382, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
  26. Moysan, Gwenaël & Senouci, Mehdi, 2016. "A note on 2-input neoclassical production functions," Journal of Mathematical Economics, Elsevier, vol. 67(C), pages 80-86.
  27. Sherman Robinson & Hans Meijl & Dirk Willenbockel & Hugo Valin & Shinichiro Fujimori & Toshihiko Masui & Ron Sands & Marshall Wise & Katherine Calvin & Petr Havlik & Daniel Mason d'Croz & Andrzej Tabe, 2014. "Comparing supply-side specifications in models of global agriculture and the food system," Agricultural Economics, International Association of Agricultural Economists, vol. 45(1), pages 21-35, January.
  28. Zuzana Smeets Kristkova & Cornelis Gardebroek & Michiel van Dijk & Hans van Meijl, 2017. "The impact of R&D on factor-augmenting technical change – an empirical assessment at the sector level," Economic Systems Research, Taylor & Francis Journals, vol. 29(3), pages 385-417, July.
  29. Miguel A. Leon-Ledesma & Mathan Satchi, 2011. "The Choice of CES Production Techniques and Balanced Growth," Studies in Economics 1113, School of Economics, University of Kent.
  30. Casey, Gregory, 2024. "Unemployment and the direction of technical change," European Economic Review, Elsevier, vol. 168(C).
  31. Mehdi Senouci & Hugo Mauron, 2020. "A new model of technical change and an application to the Solow model," Working Papers hal-02919860, HAL.
  32. Roman G. Smirnov & Kunpeng Wang, 2017. "In search of a new economic model determined by logistic growth," Papers 1711.02625, arXiv.org, revised Oct 2018.
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