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The Effects of Biased Technological Change on Total Factor Productivity. Empirical Evidence from a Sample of OECD Countries

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Cited by:

  1. Christophe Feder, 2018. "Smart Specialization Strategy and Directed Technological Change," Economics Bulletin, AccessEcon, vol. 38(3), pages 1428-1437.
  2. Feder, Christof, 2014. "Biased Technological Change: A contribution to the debate," Department of Economics and Statistics Cognetti de Martiis. Working Papers 201404, University of Turin.
  3. Cristiano Antonelli & Christophe Feder, 2021. "Knowledge appropriability and directed technological change: the Schumpeterian creative response in global markets," The Journal of Technology Transfer, Springer, vol. 46(3), pages 686-700, June.
  4. Cristiano Antonelli & Alessandra Colombelli, 2011. "The generation and exploitation of technological change: market value and total factor productivity," The Journal of Technology Transfer, Springer, vol. 36(4), pages 353-382, August.
  5. Song, Yi & Cheng, Jinhua & Zhang, Yijun & Dai, Tao & Huang, Jianbai, 2021. "Direct and indirect effects of heterogeneous technical change on metal consumption intensity: Evidence from G7 and BRICS countries," Resources Policy, Elsevier, vol. 71(C).
  6. Yu Jiang & Na Wang, 2022. "Impact of Biased Technological Change on High-Quality Economic Development of China’s Forestry: Based on Mediating Effect of Industrial Structure Upgrading," Sustainability, MDPI, vol. 14(16), pages 1-18, August.
  7. Cristiano Antonelli & Giuseppe Scellato, 2015. "Firms size and directed technological change," Small Business Economics, Springer, vol. 44(1), pages 207-218, January.
  8. Grafström, Jonas & Poudineh, Rahmat, 2023. "No evidence of counteracting policy effects on European solar power invention and diffusion," Energy Policy, Elsevier, vol. 172(C).
  9. Cristiano Antonelli, 2017. "Endogenous innovation: the creative response," Economics of Innovation and New Technology, Taylor & Francis Journals, vol. 26(8), pages 689-718, November.
  10. Antonelli, Cristiano & Feder, Christophe & Quatraro, Francesco, 2018. "Directed Technological Change and Technological Congruence: A New Framework for the Smart Specialization Strategy," Department of Economics and Statistics Cognetti de Martiis. Working Papers 201805, University of Turin.
  11. Vu, Khuong & Hartley, Kris, 2022. "Sources of transport sector labor productivity performance in industrialized countries: Insights from a decomposition analysis," Transport Policy, Elsevier, vol. 129(C), pages 204-218.
  12. Valeria Costantini & Francesco Crespi, 2013. "Public policies for a sustainable energy sector: regulation, diversity and fostering of innovation," Journal of Evolutionary Economics, Springer, vol. 23(2), pages 401-429, April.
  13. Kaveri Deb & William R. Hauk, 2020. "The Impact of Chinese Imports on Indian Wage Inequality," The Indian Journal of Labour Economics, Springer;The Indian Society of Labour Economics (ISLE), vol. 63(2), pages 267-290, June.
  14. Antonelli, Cristiano, 2016. "Technological congruence and the economic complexity of technological change," Structural Change and Economic Dynamics, Elsevier, vol. 38(C), pages 15-24.
  15. Grafström, Jonas, 2021. "Ratio Working Paper No. 351: Knowledge Spillovers in the Solar energy sector," Ratio Working Papers 351, The Ratio Institute.
  16. Albert N. Link & John T. Scott, 2021. "Technological change in the production of new scientific knowledge: a second look," Economics of Innovation and New Technology, Taylor & Francis Journals, vol. 30(4), pages 371-381, May.
  17. Nathalie Chusseau & Michel Dumont, 2012. "Growing Income Inequalities in Advanced," Working Papers hal-00993359, HAL.
  18. Antonelli,Cristiano, 2013. "The economics of technological congruence," Department of Economics and Statistics Cognetti de Martiis LEI & BRICK - Laboratory of Economics of Innovation "Franco Momigliano", Bureau of Research in Innovation, Complexity and Knowledge, Collegio 201304, University of Turin.
  19. Cristiano Antonelli & Federico Barbiellini Amidei, 2011. "The Dynamics of Knowledge Externalities," Books, Edward Elgar Publishing, number 13292.
  20. Tomasz Kijek & Arkadiusz Kijek & Piotr Bolibok & Anna Matras-Bolibok, 2021. "The Patterns of Energy Innovation Convergence across European Countries," Energies, MDPI, vol. 14(10), pages 1-17, May.
  21. Nathalie Chusseau & Michel Dumont, 2013. "Growing Income Inequalities in Advanced Countries," Palgrave Macmillan Books, in: Joël Hellier & Nathalie Chusseau (ed.), Growing Income Inequalities, chapter 1, pages 13-47, Palgrave Macmillan.
  22. Po-Chi Chen & Ming-Miin Yu, 2014. "Total factor productivity growth and directions of technical change bias: evidence from 99 OECD and non-OECD countries," Annals of Operations Research, Springer, vol. 214(1), pages 143-165, March.
  23. Cristiano Antonelli & Francesco Quatraro, 2013. "Localized Technological Change and Efficiency Wages across European Regional Labour Markets," Regional Studies, Taylor & Francis Journals, vol. 47(10), pages 1686-1700, November.
  24. Marijn Verschelde & Michel Dumont & Bruno Merlevede & Glenn Rayp, 2014. "A constrained nonparametric regression analysis of factor-biased technical change and TFP growth at the firm level," Working Paper Research 266, National Bank of Belgium.
  25. Cristiano Antonelli & Francesco Quatraro, 2014. "The effects of biased technological changes on total factor productivity: a rejoinder and new empirical evidence," The Journal of Technology Transfer, Springer, vol. 39(2), pages 281-299, April.
  26. Yongbao Ji & Yanping Wang, 2014. "Some comments on Antonelli and Quatraro’s paper of measuring effect of biased technology on TFP," The Journal of Technology Transfer, Springer, vol. 39(2), pages 276-280, April.
  27. Feder, Christophe & Kataishi, Rodrigo Ezequiel, 2017. "Decentralization in Heterogeneous Regions: A Biased Technological Change Approach," Department of Economics and Statistics Cognetti de Martiis. Working Papers 201703, University of Turin.
  28. James Bessen, 2008. "Accounting for Productivity Growth When Technical Change is Biased," Working Papers 0802, Research on Innovation.
  29. Francesco Quatraro, 2011. "ICT capital and services complementarities: the Italian evidence," Applied Economics, Taylor & Francis Journals, vol. 43(20), pages 2603-2613.
  30. Cristiano Antonelli, 2016. "A Schumpeterian growth model: wealth and directed technological change," The Journal of Technology Transfer, Springer, vol. 41(3), pages 395-406, June.
  31. Grafström, Jonas & Jaunky, Vishal, 2017. "Convergence of Incentive Capabilities within the European Union," Ratio Working Papers 301, The Ratio Institute.
  32. Grafström, Jonas, 2017. "An Econometric Analysis of Divergence of Renewable Energy Invention Efforts in Europe," Ratio Working Papers 295, The Ratio Institute.
  33. Xinyue Lin & Lingli Qi & Haoran Pan & Basil Sharp, 2022. "COVID-19 Pandemic, Technological Progress and Food Security Based on a Dynamic CGE Model," Sustainability, MDPI, vol. 14(3), pages 1-18, February.
  34. Grafström, Jonas & Poudineh, Rahmat, 2023. "Invention and Diffusion in the Solar Power Sector," Ratio Working Papers 364, The Ratio Institute.
  35. Jonas Grafström, 2018. "Divergence of renewable energy invention efforts in Europe: an econometric analysis based on patent counts," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 20(4), pages 829-859, October.
  36. Zhen, Wang & Xin-gang, Zhao & Ying, Zhou, 2021. "Biased technological progress and total factor productivity growth: From the perspective of China's renewable energy industry," Renewable and Sustainable Energy Reviews, Elsevier, vol. 146(C).
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