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Dynamical Systems That Solve Continuous-Time Concave Optimization Problems Anything Goes

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  • MONTRUCCHIO, L.

Abstract

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Suggested Citation

  • Montrucchio, L., 1988. "Dynamical Systems That Solve Continuous-Time Concave Optimization Problems Anything Goes," UFAE and IAE Working Papers 109-89, Unitat de Fonaments de l'Anàlisi Econòmica (UAB) and Institut d'Anàlisi Econòmica (CSIC).
  • Handle: RePEc:aub:autbar:109-89
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    Citations

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    Cited by:

    1. F. Wirl, 2007. "Social Interactions within a Dynamic Competitive Economy," Journal of Optimization Theory and Applications, Springer, vol. 133(3), pages 385-400, June.
    2. Wolff, Reiner, 1997. "Saddle-point dynamics in non-autonomous models of multisector growth with variable returns to scale," Journal of Mathematical Economics, Elsevier, vol. 27(3), pages 267-282, April.
    3. Anjan Mukherji, 2003. "Competitive Equilibria: Convergence, Cycles or Chaos," ISER Discussion Paper 0591, Institute of Social and Economic Research, Osaka University.
    4. De Mello, L. Jr., 1995. "Vintage capital accumulation: Endogenous growth conditions," Journal of Macroeconomics, Elsevier, vol. 17(4), pages 703-716.
    5. Kopel, M. & Dawid, H. & Feichtinger, G., 1998. "Periodic and chaotic programs of intertemporal optimization models with non-concave net benefit function," Journal of Economic Behavior & Organization, Elsevier, vol. 33(3-4), pages 435-447, January.
    6. Montrucchio, Luigi, 1995. "A turnpike theorem for continuous-time optimal-control models," Journal of Economic Dynamics and Control, Elsevier, vol. 19(3), pages 599-619, April.
    7. Willi Semmler & Malte Sieveking, 1994. "On the optimal exploitation of interacting resources," Journal of Economics, Springer, vol. 59(1), pages 23-49, February.

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