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A Continuous Leontief Dynamic Input‐Output Model

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  • Thomas Johnson

Abstract

ABSTRACT This paper extends the Leontiet dynamic input‐output model by incorporating continuous lags, capacity constraints, excess capacity and limits on disinvestment in each sector. These extensions result in “phase changes”, where sectors discretely change from one set of conditions to another. The resulting system of equations is “solved” by numerical methods and applied to the U.S. economy. Projections for the 1952 to 1962 period are compared with actual levels.

Suggested Citation

  • Thomas Johnson, 1985. "A Continuous Leontief Dynamic Input‐Output Model," Papers in Regional Science, Wiley Blackwell, vol. 56(1), pages 177-188, January.
  • Handle: RePEc:bla:presci:v:56:y:1985:i:1:p:177-188
    DOI: 10.1111/j.1435-5597.1985.tb00846.x
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    Cited by:

    1. Raffaele Giammetti & Alberto Russo & Mauro Gallegati, 2020. "Key sectors in input–output production networks: An application to Brexit," The World Economy, Wiley Blackwell, vol. 43(4), pages 840-870, April.
    2. Ruoyu Chen & Chukiat Chaiboonsri & Satawat Wannapan, 2021. "The Perspective of Thailand Economy After the Effect of Coronavirus-19 Pandemics: Explication by Dynamic I-O Models and Agent-Based Simulations," SAGE Open, , vol. 11(2), pages 21582440211, June.
    3. Zhaoqiang Ge, 2022. "Linear Quadratic Optimal Control Problem for Linear Stochastic Generalized System in Hilbert Spaces," Mathematics, MDPI, vol. 10(17), pages 1-20, August.

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