<<
>>

References and further reading

Abramovitz, M. (1956), ‘Resource and output trends in the United States since 1870’, American Economic Review, 46 (2), 5-23.

Acemoglu, D. (2002), ‘Directed technical change’, Review of Economic Studies, 69 (4), 781-809.

Aghion, P. and P. Howitt (1998), ‘On the macroeconomic effects of major technological change’, in E. Helpman (ed.), General Purpose Technologies and Economic Growth, Cambridge: MIT Press, pp. 121-44.

Arrow, K.J. (1962a), ‘Economic welfare and the allocation of resources for invention’, in R. Nelson (ed.), The Rate and Direction of Inventive Activity, Princeton, NJ: Princeton University Press.

Arrow, K.J. (1962b), ‘The economic implications of learning by doing’, Review of Economic Studies, 29 (3), 155-73.

Bresnahan, T. and M. Trajtenberg (1995), ‘General purpose technologies: “engines of growth”?’, Journal of Econometrics, 65 (1), 83-108.

Carlaw, K. and R. Lipsey (2011), ‘Sustained endogenous growth driven by structured and evolving general purpose technologies’, Journal of Evolutionary Economics, 21 (4), 563-93.

Carlsson, B., S. Jacobsson, M. Holmen and A. Rickne (2002), ‘Innovation systems: analytical and methodo­logical issues’, Research Policy, 31 (2), 233-45.

Dawid, H. (2006), ‘Agent-based models of innovation and technological change’, in L. Tesfatsion and K. Judd (eds), Handbook of Computational Economics, Vol. 2: Agent-Based Computational Economics, Amsterdam: Elsevier, pp. 1235-72.

Dosi, G. and M. Grazzi (2006), ‘Technologies as problem-solving procedures and technologies as input­output relations: some perspectives on the theory of production’, Industrial and Corporate Change, 15 (1), 173-202.

Felipe, J. (1999), ‘Total factor productivity growth in East Asia: a critical survey’, Journal of Development Studies, 35 (4), 1-41.

Grossman, G. and E. Helpman (1991), Innovation and Growth in the Global Economy, Cambridge: MIT Press.

Hahn, F. and R. Matthews (1964), ‘The theory of economic growth: a survey’, The Economic Journal, 74 (296), 779-902.

Helpman, E. and M. Trajtenberg (1998), ‘A time to sow and a time to reap: growth based on general purpose technologies’, in E. Helpman (ed.), General Purpose Technologies and Economic Growth, Cambridge: MIT Press, pp. 55-83.

Hicks, J. (1932), The Theory of Wages, London: Macmillan.

Jovanovic, B. and P. Rousseau (2005), ‘General purpose technologies’, in P. Aghion and N. Durlauf (eds), Handbook of Economic Growth, vol. 1B, Amsterdam: Elsevier, pp. 1181-224.

Kalmbach, P. and H.D. Kurz (1990), ‘Micro-electronics and employment: a dynamic input-output study of the West German economy’, Structural Change and Economic Dynamics, 1 (2), 371-86.

Kendrick, J. (1956), ‘Productivity trends: capital and labor’, Review of Economics and Statistics, 38 (3), 248-57.

Kennedy, C. (1964), ‘Induced bias in innovation and the theory of distribution’, The Economic Journal, 74 (295), 541-7.

Kurz, H.D. (2010), ‘Technical progress, capital accumulation and income distribution in classical economics: Adam Smith, David Ricardo and Karl Marx’, European Journal of the History of Economic Thought, 17 (5), 1183-222.

Kurz, H.D. and N. Salvadori (1995), Theory of Production. A Long-Period Analysis, Cambridge, New York and Melbourne: Cambridge University Press.

Leontief, W. and F. Duchin (1986), The Future Impact of Automation on Workers, New York: Oxford University Press.

Lipsey, R., K. Carlaw and C. Bekar (2005), Economic Transformations. General Purpose Technologies and Long- Term Economic Growth, New York: Oxford University Press.

List, F. (1841), Das nationale System der politischen Okonomie, reprinted 1959, Basel: Kyklos-Verlag.

Lucas, R.E. (1988), ‘On the mechanics of economic development’, Journal of Monetary Economics, 22 (1), 3-42.

Lundvall, B.-A. (ed.) (1992), National Systems of Innovation: Towards a Theory of Innovation and Interactive Learning, reprinted 2010, London, New York and Delhi: Anthem Press.

Lundvall, B.-A. (2007), ‘National innovation systems: from List to Freeman’, in H. Hanusch and A. Pyka (eds), Elgar Companion to Neo- Schumpeterian Economics, Cheltenham, UK and Northampton, MA, USA: Edward Elgar, pp. 872-81.

Marx, K. (1954), Capital, vol. 1, Moscow: Progress.

Marx, K. (1959), Capital, vol. 3, Moscow: Progress.

Metcalfe, S. (1997), ‘The evolutionary explanation of total factor productivity growth: macro measurement and micro process’, Revue d’economie industrielle, 80 (1), 93-114.

Metcalfe, S. (1998), Evolutionary Economics and Creative Destruction, London: Routledge.

Mowery, D.C. and N. Rosenberg (1989), Technology and the Pursuit of Economic Growth, Cambridge: Cambridge University Press.

Nelson, R. (1959), ‘The economics of invention: a survey of the literature’, Journal of Business, 32 (2), 101-27.

Nelson, R. (ed.) (1993), National Innovation Systems: A Comparative Analysis, Oxford: Oxford University Press.

Nelson, R. and S. Winter (1982), An Evolutionary Theory of Economic Change, Cambridge: Belknap Press.

Nordhaus, W. (1973), ‘Some skeptical thoughts on the theory of induced innovation’, Quarterly Journal of Economics, 87 (2), 208-19.

Piketty, T. (2014), Capital in the 21st Century, Cambridge, MA: Harvard University Press.

Ricardo, D. (1951-73), The Works and Correspondence of David Ricardo, 11 vols, ed. P. Sraffa with collabora­tion of M.H. Dobb, Cambridge: Cambridge University Press.

Romer, P. (1986), ‘Increasing returns and long-run growth’, Journal of Political Economy, 94 (5), 1002-37.

Romer, P. (1990), ‘Endogenous technological change’, Journal of Political Economy, 98 (5), 71-102.

Rosenberg, N. (1982), Inside the Black Box: Technology and Economics, Cambridge: Cambridge University Press.

Rosenberg, N. (2000), Schumpeter and the Endogeneity of Technology, Some American Perspective, London: Routledge.

Rothwell, R. and W. Zegveld (1985), Reindustrialization and Technology, Harlow: Longman.

Salter, W. (1960), Productivity and Technical Change, Cambridge: Cambridge University Press.

Samuelson, P. (1965), ‘A theory of innovation along Kennedy-Weizsacker lines’, Review of Economics and Statistics, 47 (4), 343-56.

Schefold, B. (1976), ‘Different forms of technical progress’, Economic Journal, 86 (344), 806-19.

Schmookler, J. (1966), Invention and Economic Growth, Cambridge, MA: Harvard University Press.

Schumpeter, J.A. (1912, The Theory of Economic Development: An Inquiry Into Profits, Capital, Credit, Interest, and the Business Cycle, reprinted 1934, London: Transaction Books.

Schumpeter, J.A. (1942), Capitalism, Socialism, and Democracy, reprinted 2010, London and New York: Routledge.

Silverberg, G. and D. Lehnert (1993), ‘Long waves and “evolutionary chaos” in a simple Schumpeterian model of embodied technical change’, Structural Change and Economic Dynamics, 4 (1), 9-37.

Smith, A. (1776), An Inquiry into the Nature and Causes of the Wealth of Nations, 2 vols, in R.H. Campbell and A.S. Skinner (eds) (1976), The Glasgow Edition of the Works and Correspondence of Adam Smith, Oxford: Oxford University Press.

Solow, R. (1956), ‘A contribution to the theory of economic growth’, Quarterly Journal of Economics, 70 (1), 65-94.

Solow, R. (1957), ‘Technical change and the aggregate production function’, Review of Economics and Statistics, 39 (3), 312-20.

Sraffa, P. (1960), Production of Commodities by Means of Commodities. Prelude to a Critique of Economic Theory, Cambridge: Cambridge University Press.

Stoneman, P. (2002), The Economics of Technological Diffusion, Oxford: Blackwell.

Thompson, E.A. (1984), Studies in the Theory of Ideology, Berkeley, CA: University of California Press.

von Weizsacker, C.-C. (1965), ‘Tentative notes on a two sector model with induced technical progress’, Review of Economic Studies, 33 (3), 245-51.

Young, A.A. (1928), ‘Increasing returns and economic progress’, The Economic Journal, 38 (152), 527-42.

<< | >>
Source: Faccarello G., Kurz H.-D.. Handbook on the history of economic analysis. Volume III, Developments in major fields of economics. Edward Elgar,2016. — 659 p. 2016

More on the topic References and further reading: