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Factor Prices And Technical Change In Agricultural Development: The United States And Japan, 1880-1960

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  1. The Industrial Revolution and Modern Development
    by dvollrath in The Growth Economics Blog on 2015-01-14 02:48:25

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Cited by:

  1. Shuhei Aoki & Julen Esteban-Pretel & Tetsuji Okazaki & Yasuyuki Sawada, 2010. "The Role of the Government in Facilitating TFP Growth during Japan’s Rapid-growth Era," Palgrave Macmillan Books, in: Keijiro Otsuka & Kaliappa Kalirajan (ed.), Community, Market and State in Development, chapter 4, pages 21-44, Palgrave Macmillan.
  2. Takeshima, Hiroyuki, 2015. "Market imperfections for tractor service provision in Nigeria: International perspectives and empirical evidence:," IFPRI discussion papers 1424, International Food Policy Research Institute (IFPRI).
  3. Esposti, Roberto & Pierani, Pierpaolo, 2008. "Price-induced technical progress in Italian agriculture," Review of Agricultural and Environmental Studies - Revue d'Etudes en Agriculture et Environnement (RAEStud), Institut National de la Recherche Agronomique (INRA), vol. 89(4).
  4. Michael A. Clemens & Ethan G. Lewis & Hannah M. Postel, 2018. "Immigration Restrictions as Active Labor Market Policy: Evidence from the Mexican Bracero Exclusion," American Economic Review, American Economic Association, vol. 108(6), pages 1468-1487, June.
  5. Toland, Gerald Jr & Schmiesing, Brian H. & Black, J. Roy, 1989. "Analysis and Comparison of Alternative Estimations of Crop Yield Probability Distributions," WAEA/ WFEA Conference Archive (1929-1995) 244976, Western Agricultural Economics Association.
  6. Morris, Michael L. & Smale, Melinda, 1997. "Organization and Performance of National Maize Seed Industries: A New Institutionalist Perspective," Economics Working Papers 7698, CIMMYT: International Maize and Wheat Improvement Center.
  7. Bassino, Jean-Pascal, 2006. "The Growth of Agricultural Output and Food Supply in Meiji Japan: Economic Miracle or Statistical Artifact?," Economic Development and Cultural Change, University of Chicago Press, vol. 54(2), pages 503-520, January.
  8. Trueblood, Michael A., 1994. "An Annotated Bibliography Of Selected Productivity Literature," Staff Papers 13580, University of Minnesota, Department of Applied Economics.
  9. Ruttan, Vernon W., 2008. "General Purpose Technology, Revolutionary Technology, and Technological Maturity," Staff Papers 6206, University of Minnesota, Department of Applied Economics.
  10. Napasintuwong, Orachos & Emerson, Robert D., 2006. "Immigrant Workers and Technological Change in U.S. Agriculture: A Profit Maximization Approach of Induced Innovation," 2006 Annual Meeting, August 12-18, 2006, Queensland, Australia 25505, International Association of Agricultural Economists.
  11. Napasintuwong, Orachos & Emerson, Robert D., 2003. "Farm Mechanization And The Farm Labor Market: A Socioeconomic Model Of Induced Innovation," 2003 Annual Meeting, February 1-5, 2003, Mobile, Alabama 35117, Southern Agricultural Economics Association.
  12. Kerstens, Kristiaan & O’Donnell, Christopher & Van de Woestyne, Ignace, 2019. "Metatechnology frontier and convexity: A restatement," European Journal of Operational Research, Elsevier, vol. 275(2), pages 780-792.
  13. F. Shirani Bidabadi & M. Hashemitabar, 2009. "The induced innovation test (co-integration analysis) of Iranian agriculture," Agricultural Economics, Czech Academy of Agricultural Sciences, vol. 55(3), pages 126-133.
  14. Bezat-Jarzębowska, Agnieszka, 2021. "Factor Relations in Agriculture – Conceptual Reasoning with Empirical Verification," Problems of Agricultural Economics / Zagadnienia Ekonomiki Rolnej 311276, Institute of Agricultural and Food Economics - National Research Institute (IAFE-NRI).
  15. Fisher-Vanden, Karen & Jefferson, Gary H., 2008. "Technology diversity and development: Evidence from China's industrial enterprises," Journal of Comparative Economics, Elsevier, vol. 36(4), pages 658-672, December.
  16. Bruton HJ., 1979. "On the production of appropriate technology," ILO Working Papers 991822923402676, International Labour Organization.
  17. Mr. Alberto Behar, 2013. "The Endogenous Skill Bias of Technical Change and Inequality in Developing Countries," IMF Working Papers 2013/050, International Monetary Fund.
  18. Mundlak, Yair, 2003. "Economic Growth: Lessons From Two Centuries Of American Agriculture," Discussion Papers 14986, Hebrew University of Jerusalem, Department of Agricultural Economics and Management.
  19. Orachos Napasintuwong Artachinda, 2011. "Modeling Directions of Technical Change in Agricultural Sector," Working Papers 201101, Kasetsart University, Department of Agricultural and Resource Economics.
  20. zhibo Tan & Xiaobo Zhang, 2016. "Does Female Labor Scarcity Encourage Innovation? Evidence from China’s Gender Imbalance," Working Papers id:11039, eSocialSciences.
  21. Alejandro Nin Pratt, 2016. "Comparing Apples to Apples: A New Indicator of Research and Development Investment Intensity in Agriculture," Working Papers id:11379, eSocialSciences.
  22. Raphaël Godefroy, 2010. "The birth of the congressional clinic," Working Papers halshs-00564921, HAL.
  23. Ruttan, Vernon W., 1987. "Induced innovation and agricultural development," Food Policy, Elsevier, vol. 12(3), pages 196-216, August.
  24. Christian Otchia, 2014. "Agricultural Modernization, Structural Change and Pro-poor Growth: Policy Options for the Democratic Republic of Congo," Journal of Economic Structures, Springer;Pan-Pacific Association of Input-Output Studies (PAPAIOS), vol. 3(1), pages 1-43, December.
  25. 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.
  26. Go, Delfin S. & Kearney, Marna & Robinson, Sherman & Thierfelder, Karen, 2004. "An Analysis of South Africa's Value Added Tax," Conference papers 331274, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
  27. KOBAYASHI Keiichiro, 2012. "Demographic Change and Directed Technological Change," Discussion papers 12053, Research Institute of Economy, Trade and Industry (RIETI).
  28. Bruce Koppel & Edmund Oasa, 1987. "Induced Innovation Theory and Asia's Green Revolution: A Case Study of an Ideology of Neutrality," Development and Change, International Institute of Social Studies, vol. 18(1), pages 29-67, January.
  29. Queiroz, Pedro & Fulginiti, Lilyan & Perrin, Richard, 2021. "Induced Innovation in South American Agriculture: Deforestation and Directed Technical Change," 2021 Conference, August 17-31, 2021, Virtual 315416, International Association of Agricultural Economists.
  30. Taoran Chen & Zhibo Tan & Xiaobo Zhang, 2022. "Does female labor scarcity encourage innovation? Evidence from China's gender imbalance," Journal of Economics & Management Strategy, Wiley Blackwell, vol. 31(2), pages 418-447, April.
  31. Josephson, Anna Leigh & Ricker-Gilbert, Jacob & Florax, Raymond J.G.M., 2014. "How does population density influence agricultural intensification and productivity? Evidence from Ethiopia," Food Policy, Elsevier, vol. 48(C), pages 142-152.
  32. Queiroz, P. & Silva, F.D.F. & Fulginiti, L., 2018. "How did technical change affect land use in Brazilian agriculture?," 2018 Conference, July 28-August 2, 2018, Vancouver, British Columbia 277318, International Association of Agricultural Economists.
  33. Joshua Linn, 2008. "Energy Prices and the Adoption of Energy‐Saving Technology," Economic Journal, Royal Economic Society, vol. 118(533), pages 1986-2012, November.
  34. Yucan Liu & C. Richard Shumway, 2009. "Induced Innovation in U.S. Agriculture: Time-series, Direct Econometric, and Nonparametric Tests," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 91(1), pages 224-236.
  35. Shenggen Fan & Vernon W. Ruttan, 1992. "Induced technical change in centrally planned economies," Agricultural Economics, International Association of Agricultural Economists, vol. 6(4), pages 301-314, April.
  36. Diao, Xinshen & Silver, Jed & Takeshima, Hiroyuki, 2016. "Agricultural mechanization and agricultural transformation:," IFPRI discussion papers 1527, International Food Policy Research Institute (IFPRI).
  37. Tyack, Nicholas, 2020. "Genetic resources and agricultural productivity in the developing world," 2020 Annual Meeting, July 26-28, Kansas City, Missouri 304277, Agricultural and Applied Economics Association.
  38. Wicki, Ludwik, 2021. "The Role Of Technological Progress In Agricultural Output Growth In The Nms Upon European Union Accession," Roczniki (Annals), Polish Association of Agricultural Economists and Agribusiness - Stowarzyszenie Ekonomistow Rolnictwa e Agrobiznesu (SERiA), vol. 2021(1).
  39. Sylvain Larivière & Frédéric Martin & Peter Calkins, 2004. "An economic interpretation of innovations in rural microfinance," Cahiers d'Economie et Sociologie Rurales, INRA Department of Economics, vol. 72, pages 69-89.
  40. Lu, Hua & Xie, Hualin & He, Yafen & Wu, Zhilong & Zhang, Xinmin, 2018. "Assessing the impacts of land fragmentation and plot size on yields and costs: A translog production model and cost function approach," Agricultural Systems, Elsevier, vol. 161(C), pages 81-88.
  41. Nelson B. Villoria & Derek Byerlee & James Stevenson, 2014. "The Effects of Agricultural Technological Progress on Deforestation: What Do We Really Know?," Applied Economic Perspectives and Policy, Agricultural and Applied Economics Association, vol. 36(2), pages 211-237.
  42. Chiarella, Cristina & Meyfroidt, Patrick & Abeygunawardane, Dilini & Conforti, Piero, 2023. "Balancing the trade-offs between land productivity, labor productivity and labor intensity," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 52(10), pages 1618-1634.
  43. Daron Acemoglu, 2002. "Technical Change, Inequality, and the Labor Market," Journal of Economic Literature, American Economic Association, vol. 40(1), pages 7-72, March.
  44. Mehdi Senouci, 2014. "The Habakkuk hypothesis in a neoclassical framework," Working Papers hal-01206032, HAL.
  45. Bretschger, Lucas & Zhang, Lin, 2017. "Carbon policy in a high-growth economy: The case of China," Resource and Energy Economics, Elsevier, vol. 47(C), pages 1-19.
  46. Stephen F. Hamilton & Timothy J. Richards & Aric P. Shafran & Kathryn N. Vasilaky, 2022. "Farm labor productivity and the impact of mechanization," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(4), pages 1435-1459, August.
  47. Pallavi Rajkhowa & Zaneta Kubik, 2021. "Revisiting the relationship between farm mechanization and labour requirement in India," Indian Economic Review, Springer, vol. 56(2), pages 487-513, December.
  48. Liu, Yucan & Shumway, C. Richard, 2009. "Induced innovation and marginal cost of new technology," Economics Letters, Elsevier, vol. 105(1), pages 106-109, October.
  49. Ruttan, Vernon W., 1996. "Sources Of Technical Change: Induced Innovation, Evolutionary Theory And Path Dependence," Bulletins 12974, University of Minnesota, Economic Development Center.
  50. Petra Moser, 2021. "Economics of Research and Innovation in Agriculture," NBER Books, National Bureau of Economic Research, Inc, number mose-1, March.
  51. Shinichi Kitano, 2021. "Estimation of Determinants of Farmland Abandonment and Its Data Problems," Land, MDPI, vol. 10(6), pages 1-17, June.
  52. Hayami, Yujiro & Ruttan, Vernon W, 1970. "Agricultural Productivity Differences Among Countries," American Economic Review, American Economic Association, vol. 60(5), pages 895-911, December.
  53. Nelson B Villoria, 2019. "Technology Spillovers and Land Use Change: Empirical Evidence from Global Agriculture," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 101(3), pages 870-893.
  54. Joshi, E. & Veettil, P. Chellattan, 2018. "Effect of Mechanization on the welfare of marginalized sections of the society," 2018 Conference, July 28-August 2, 2018, Vancouver, British Columbia 277395, International Association of Agricultural Economists.
  55. John Baffes & Alain Kabundi & Peter Nagle, 2022. "The role of income and substitution in commodity demand [Modelling OECD industrial energy demand: asymmetric price responses and energy-saving technical change]," Oxford Economic Papers, Oxford University Press, vol. 74(2), pages 498-522.
  56. Benjamin R. Mandel, 2011. "The dynamics and differentiation of Latin American metal exports," Staff Reports 508, Federal Reserve Bank of New York.
  57. Napasintuwong, Orachos & Emerson, Robert D., 2002. "Induced Innovations And Foreign Workers In U.S. Agriculture," 2002 Annual meeting, July 28-31, Long Beach, CA 19738, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
  58. Aniel A. Altamirano Ogarrio & Mario M. Carrillo Huerta & Jose A. Ceron Vargas, 2005. "Sectoral Economic Growth and Employment in Mexico, 1996-2001," EconoQuantum, Revista de Economia y Finanzas, Universidad de Guadalajara, Centro Universitario de Ciencias Economico Administrativas, Departamento de Metodos Cuantitativos y Maestria en Economia., vol. 2(1), pages 63-90, Julio-Dic.
  59. Li, Jianqiang & Shan, Yaowen & Tian, Gary & Hao, Xiangchao, 2020. "Labor cost, government intervention, and corporate innovation: Evidence from China," Journal of Corporate Finance, Elsevier, vol. 64(C).
  60. Fernando S. Machado, 1995. "Testing The Induced Innovation Hypothesis Using Cointegration Analysis," Journal of Agricultural Economics, Wiley Blackwell, vol. 46(3), pages 349-360, September.
  61. Li, George Yunxiong & Ascani, Andrea & Iammarino, Simona, 2024. "The material basis of modern technologies. A case study on rare metals," Research Policy, Elsevier, vol. 53(1).
  62. Huaicheng Li & Qing He & Chenming Liu & Wei Dai & Rilong Fei, 2022. "How to Maintain Sustainable Development of China’s Agriculture under the Restriction of Production Resources? Research with Respect to the Effect on Output of the Substitution of Input Factors," Energies, MDPI, vol. 15(10), pages 1-19, May.
  63. Kryszak, Łukasz & Herzfeld, Thomas, 2021. "One or many European models of agriculture? How heterogeneity influences income creation among farms in the European Union," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 67(11), pages 445-456.
  64. Pardey, Philip G. & Alston, Julian M. & Ruttan, Vernon W., 2010. "The Economics of Innovation and Technical Change in Agriculture," Handbook of the Economics of Innovation, in: Bronwyn H. Hall & Nathan Rosenberg (ed.), Handbook of the Economics of Innovation, edition 1, volume 2, chapter 0, pages 939-984, Elsevier.
  65. Liu, Qinghua & Shumway, C. Richard, 2003. "Induced Innovation Tests On Western American Agriculture: A Cointegration Analysis," 2003 Annual meeting, July 27-30, Montreal, Canada 22237, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
  66. Johnson, Glenn L., 1992. "PART FOUR. Philosophic Foundations of Agricultural Economic Thought from World War II to the mid-1970s," AAEA Monographs, Agricultural and Applied Economics Association, number 337234, january.
  67. Tai-Yoo Kim & Mi-Ae Jung & Eungdo Kim & Eunnyeong Heo, 2011. "The Faster-Accelerating Growth of the Knowledge-Based Society," TEMEP Discussion Papers 201181, Seoul National University; Technology Management, Economics, and Policy Program (TEMEP), revised Nov 2011.
  68. Alston, Julian M. & Chalfant, James A. & Pardey, Philip G., 1993. "Structural Adjustment In Oecd Agriculture: Government Policies And Technical Change," Working Papers 14473, University of Minnesota, Center for International Food and Agricultural Policy.
  69. Jin, Qianying & Basso, Antonella & Funari, Stefania & Kerstens, Kristiaan & Van de Woestyne, Ignace, 2024. "Evaluating different groups of mutual funds using a metafrontier approach: Ethical vs. non-ethical funds," European Journal of Operational Research, Elsevier, vol. 312(3), pages 1134-1145.
  70. Xilong Jiang & Guanyi Yin & Yi Lou & Shuai Xie & Wei Wei, 2021. "The Impact of Transformation of Farmers’ Livelihood on the Increasing Labor Costs of Grain Plantation in China," Sustainability, MDPI, vol. 13(21), pages 1-18, October.
  71. Diao, Xinshen & Cossar, Frances & Houssou, Nazaire & Kolavalli, Shashidhara, 2014. "Mechanization in Ghana: Emerging demand, and the search for alternative supply models," Food Policy, Elsevier, vol. 48(C), pages 168-181.
  72. Seré, Carlos, 2020. "Investing Sustainably in African Livestock Development: Opportunities and Trade-Offs," Working Papers 305186, University of Bonn, Center for Development Research (ZEF).
  73. Aniel A. Altamirano Ogarrio & Mario M. Carrillo Huerta & José A. Cerón Vargas, 2005. "Sectorial Economic Growth and Employment in Mexico, 1996-2001," DEGIT Conference Papers c010_033, DEGIT, Dynamics, Economic Growth, and International Trade.
  74. Liu, Xinyue & Wang, Xiaobing & Xu, Zhigang, 2023. "The polarization and constraints of scale farming in China under the impact of rising wages," Journal of Asian Economics, Elsevier, vol. 86(C).
  75. Yeung, Patrick & Roe, Terry L., 1971. "Induced Innovation: A Ces-Type Meta-Production Function," Staff Papers 13622, University of Minnesota, Department of Applied Economics.
  76. Nathan P. Hendricks & Aaron Smith & Nelson B. Villoria & Matthieu Stigler, 2023. "The effects of agricultural policy on supply and productivity: Evidence from differential changes in distortions," Agricultural Economics, International Association of Agricultural Economists, vol. 54(1), pages 44-61, January.
  77. Fukunishi, Takahiro & Yamagata, Tatsufumi, 2013. "Slow and steady wins the race : how the garment industry leads industrialization in low-income countries," IDE Discussion Papers 412, Institute of Developing Economies, Japan External Trade Organization(JETRO).
  78. Ströh de Martínez, Christiane & Feddersen, Marietta & Speicher, Anna, 2016. "Food security in sub-Saharan Africa: a fresh look on agricultural mechanisation. How adapted financial solutions can make a difference," IDOS Studies, German Institute of Development and Sustainability (IDOS), volume 91, number 91.
  79. Jessie K. Luna, 2020. "‘Pesticides are our children now’: cultural change and the technological treadmill in the Burkina Faso cotton sector," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 37(2), pages 449-462, June.
  80. Ludo Peeters & Yves Surry, 2000. "Incorporating Price-Induced Innovation in a Symmetric Generalised McFadden Cost Function with Several Outputs," Journal of Productivity Analysis, Springer, vol. 14(1), pages 53-70, July.
  81. Zhang, Lin, 2017. "The knowledge spillover effects of FDI on the productivity and efficiency of research activities in China," China Economic Review, Elsevier, vol. 42(C), pages 1-14.
  82. Prahladachar, M., 1982. "Income Distribution Effects of Green Revolution in India: A Review of Empirical Evidences," Bulletins 8438, University of Minnesota, Economic Development Center.
  83. Nagarajan, Aravindhan, 2019. "Addressing the Climate Change Debate in Agriculture," Review of Agrarian Studies, Foundation for Agrarian Studies, vol. 9(1), July.
  84. Benson, Aaron & Shumway, C. Richard, 2005. "Induced Innovation or a Paradox of Environmental Regulation?," 2005 Annual meeting, July 24-27, Providence, RI 19450, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
  85. Hatzenbuehler, Patrick L. & Takeshima, Hiroyuki & Edeh, Hyacinth & Lawal, Akeem, 2018. "Cost and policy determinants of features of tractor markets in Nigeria: Case studies of tractor sellers in Kaduna state and tractor owners in Benue state," NSSP working papers 55, International Food Policy Research Institute (IFPRI).
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