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Dynamic cropping strategies for risk management in dry-land farming systems

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  • Sadras, Victor
  • Roget, David
  • Krause, Mike

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  • Sadras, Victor & Roget, David & Krause, Mike, 2003. "Dynamic cropping strategies for risk management in dry-land farming systems," Agricultural Systems, Elsevier, vol. 76(3), pages 929-948, June.
  • Handle: RePEc:eee:agisys:v:76:y:2003:i:3:p:929-948
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    References listed on IDEAS

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    1. Saleh, A. F. M. & Bhuiyan, S. I., 1995. "Crop and rain water management strategies for increasing productivity of rainfed lowland rice systems," Agricultural Systems, Elsevier, vol. 49(3), pages 259-276.
    2. Messina, C. D. & Hansen, J. W. & Hall, A. J., 1999. "Land allocation conditioned on El Nino-Southern Oscillation phases in the Pampas of Argentina," Agricultural Systems, Elsevier, vol. 60(3), pages 197-212, June.
    3. Wafula, Benson M., 1995. "Applications of crop simulation in agricultural extension and research in Kenya," Agricultural Systems, Elsevier, vol. 49(4), pages 399-412.
    4. Palhares de Melo, L. A. M. & Bertioli, D. J. & Cajueiro, E. V. M. & Bastos, R. C., 2001. "Recommendation for fertilizer application for soils via qualitative reasoning," Agricultural Systems, Elsevier, vol. 67(1), pages 21-30, January.
    5. Rotter, R. & van Keulen, H., 1997. "Variations in yield response to fertilizer application in the tropics: II. Risks and opportunities for smallholders cultivating maize on Kenya's arable land," Agricultural Systems, Elsevier, vol. 53(1), pages 69-95, January.
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    Cited by:

    1. Monjardino, Marta & McBeath, T. & Brennan, Lisa E. & Llewellyn, Rick S., 2012. "Revisiting N fertilisation rates in low-rainfall grain cropping regions of Australia: A risk analysis," 2012 Conference (56th), February 7-10, 2012, Fremantle, Australia 124339, Australian Agricultural and Resource Economics Society.
    2. Passioura, John, 2006. "Increasing crop productivity when water is scarce--from breeding to field management," Agricultural Water Management, Elsevier, vol. 80(1-3), pages 176-196, February.
    3. Le Gal, P.-Y. & Dugué, P. & Faure, G. & Novak, S., 2011. "How does research address the design of innovative agricultural production systems at the farm level? A review," Agricultural Systems, Elsevier, vol. 104(9), pages 714-728.
    4. García-Alonso, Carlos R. & Torres-Jiménez, Mercedes & Hervás-Martínez, César, 2010. "Income prediction in the agrarian sector using product unit neural networks," European Journal of Operational Research, Elsevier, vol. 204(2), pages 355-365, July.
    5. Srijita Ghosh & Kausik Gupta, 2023. "Dynamic Analysis of Watershed Management and Sustainable Agriculture in Dryland Regions: A Case Study of Purulia District, West Bengal," Review of Development and Change, , vol. 28(2), pages 207-244, December.
    6. Hutchings, Timothy R. & Nordblom, Thomas L., 2011. "A financial analysis of the effect of the mix of crop and sheep enterprises on the risk profile of dryland farms in south-eastern Australia," AFBM Journal, Australasian Farm Business Management Network, vol. 8(1), pages 1-23, October.
    7. Greijdanus, Auke & Kragt, Marit Ellen, 2014. "The Grains Industry: An overview of the Australian broad-acre cropping," Working Papers 164256, University of Western Australia, School of Agricultural and Resource Economics.
    8. Monjardino, Marta & McBeath, T. & Brennan, Lisa E. & Llewellyn, Rick S., 2012. "Are farmers in low-rainfall cropping regions under-fertilizing? An Australian case-study," 2012 Conference, August 18-24, 2012, Foz do Iguacu, Brazil 124976, International Association of Agricultural Economists.
    9. Leake, John E. & Morison, Julian B., 2008. "Land repair fund: a model for exploiting the nexus between land repair, improved production and profit," Australasian Agribusiness Review, University of Melbourne, Department of Agriculture and Food Systems, vol. 16.
    10. Murray, Francisco & Baldi, Germán & von Bernard, Tamara & Viglizzo, Ernesto Francisco & Jobbágy, Esteban Gabriel, 2016. "Productive performance of alternative land covers along aridity gradients: Ecological, agronomic and economic perspectives," Agricultural Systems, Elsevier, vol. 149(C), pages 20-29.
    11. Nethononda, L. O. & Odhiambo, J.J. O & Paterson, D G, 2013. "Indigenous Knowledge of Climatic Conditions for Sustainable Crop Production under Resource-Poor Farming Conditions Using Participatory Techniques," Sustainable Agriculture Research, Canadian Center of Science and Education, vol. 2(1).
    12. Ramírez-Rodrigues, Melissa A. & Alderman, Phillip D. & Stefanova, Lydia & Cossani, C. Mariano & Flores, Dagoberto & Asseng, Senthold, 2016. "The value of seasonal forecasts for irrigated, supplementary irrigated, and rainfed wheat cropping systems in northwest Mexico," Agricultural Systems, Elsevier, vol. 147(C), pages 76-86.
    13. Puech, Camille & Brulaire, Arnaud & Paraiso, Jérôme & Faloya, Vincent, 2021. "Collective design of innovative agroecological cropping systems for the industrial vegetable sector," Agricultural Systems, Elsevier, vol. 191(C).
    14. Omid Bozorg-Haddad & Samaneh Sohrabi & Mohammad Delpasand & Hugo A. Loáiciga, 2021. "Dryland farming improvement by considering the relation between rainfall variability and crop yield," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(4), pages 5316-5327, April.

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