Is Discrete Time a Good Representation of Continuous Time?
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- Omar Licandro & Luis A. Puch, 2006. "Is Discrete Time a Good Representation of Continuous Time?," Economics Working Papers ECO2006/28, European University Institute.
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- Bosi Stefano & Ragot Lionel, 2010. "Time, Bifurcations and Economic Applications," THEMA Working Papers 2010-01, THEMA (THéorie Economique, Modélisation et Applications), Université de Cergy-Pontoise.
- Stefano Bosi & Lionel Ragot, 2009. "Time, bifurcations and economic applications," Documents de travail du Centre d'Economie de la Sorbonne 09028, Université Panthéon-Sorbonne (Paris 1), Centre d'Economie de la Sorbonne.
- Stefano Bosi & Lionel Ragot, 2009. "Time, bifurcations and economic applications," Post-Print halshs-00384513, HAL.
- Morhaim, Lisa & Ulus, Ayşegül Yıldız, 2023. "On history-dependent optimization models: A unified framework to analyze models with habits, satiation and optimal growth," Journal of Mathematical Economics, Elsevier, vol. 105(C).
- Chryssi Giannitsarou & Alexia Anagnostopoulos, 2005.
"Modeling Time and Macroeconomic Dynamics,"
Money Macro and Finance (MMF) Research Group Conference 2005
60, Money Macro and Finance Research Group.
- Giannitsarou, Chryssi & Anagnostopoulos, Alexis, 2010. "Modelling Time And Macroeconomic Dynamics," CEPR Discussion Papers 8050, C.E.P.R. Discussion Papers.
- Juan Sebastián Pereyra & Juan Gabriel Brida, 2008. "The Solow model in discrete time and decreasing population growth rate," Economics Bulletin, AccessEcon, vol. 3(41), pages 1-14.
- Gómez Manuel A., 2014. "Discrete Versus Continuous Time in an Endogenous Growth Model with Durable Consumption," Mathematical Economics Letters, De Gruyter, vol. 2(3-4), pages 67-75, November.
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More about this item
JEL classification:
- O40 - Economic Development, Innovation, Technological Change, and Growth - - Economic Growth and Aggregate Productivity - - - General
- E32 - Macroeconomics and Monetary Economics - - Prices, Business Fluctuations, and Cycles - - - Business Fluctuations; Cycles
- C61 - Mathematical and Quantitative Methods - - Mathematical Methods; Programming Models; Mathematical and Simulation Modeling - - - Optimization Techniques; Programming Models; Dynamic Analysis
NEP fields
This paper has been announced in the following NEP Reports:- NEP-CBA-2006-07-21 (Central Banking)
- NEP-DGE-2006-07-21 (Dynamic General Equilibrium)
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