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Drought policy: a graphical analysis

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  • John Quiggin
  • Robert G. Chambers

Abstract

The standard approach to modelling production under uncertainty has relied on the concept of the stochastic production function. In the present paper, it is argued that a state‐contingent production model is more flexible and realistic. The model is applied to the problem of drought policy.

Suggested Citation

  • John Quiggin & Robert G. Chambers, 2004. "Drought policy: a graphical analysis," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 48(2), pages 225-251, June.
  • Handle: RePEc:bla:ajarec:v:48:y:2004:i:2:p:225-251
    DOI: 10.1111/j.1467-8489.2004.00249.x
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    1. Bardsley, Peter & Abey, Arun & Davenport, Scott V., 1984. "The Economics Of Insuring Crops Against Drought," Australian Journal of Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 28(1), pages 1-14, April.
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    7. Chambers, Robert G. & Quiggin, John C., 2004. "Technological and financial approaches to risk management in agriculture: an integrate approach," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 48(2), pages 1-25.
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    9. Quiggin, John C., 1986. "A Note On The Viability Of Rainfall Insurance," Australian Journal of Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 30(1), pages 1-7, April.
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    11. Sandmo, Agnar, 1971. "On the Theory of the Competitive Firm under Price Uncertainty," American Economic Review, American Economic Association, vol. 61(1), pages 65-73, March.
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    Cited by:

    1. Perry, Neil & Shankar, Sriram, 2017. "The State-contingent Approach to the Noah's Ark Problem," Ecological Economics, Elsevier, vol. 134(C), pages 65-72.
    2. Adamson, David & Mallawaarachchi, Thilak & Quiggin, John C., 2007. "Water use and salinity in the Murray–Darling Basin: A state-contingent model," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 51(3), pages 1-19.
    3. Adamson, David & Loch, Adam & Schwabe, Kurt, 2017. "Adaptation responses to increasing drought frequency," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 61(3), July.
    4. John Quiggin & Robert G. Chambers, 2006. "The state-contingent approach to production under uncertainty ," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 50(2), pages 153-169, June.
    5. David Adamson & Thilak Mallawaarachchi & John Quiggin, 2009. "Declining inflows and more frequent droughts in the Murray-Darling Basin: climate change, impacts and adaptation ," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 53(3), pages 345-366, July.
    6. Carter, Chris & Crean, Jason & Kingwell, Ross S. & Hertzler, Greg, 2006. "Managing and Sharing the Risks of Drought in Australia," 2006 Annual Meeting, August 12-18, 2006, Queensland, Australia 25319, International Association of Agricultural Economists.
    7. Quiggin, John & Chambers, Robert G., 2005. "The state-contingent approach to production and uncertainty," Risk and Sustainable Management Group Working Papers 151168, University of Queensland, School of Economics.
    8. John Quiggin, 2005. "Risk and water management in the Murray-Darling Basin," Murray-Darling Program Working Papers WPM05_4, Risk and Sustainable Management Group, University of Queensland.
    9. Iglesias, Eva & Garrido, Alberto & Gomez-Ramos, Almudena, 2007. "Economic drought management index to evaluate water institutions' performance under uncertainty," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 51(1), pages 1-22.
    10. Ejaz Qureshi, M. & Hanjra, Munir A. & Ward, John, 2013. "Impact of water scarcity in Australia on global food security in an era of climate change," Food Policy, Elsevier, vol. 38(C), pages 136-145.

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