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Dynamic Area Allocation and Economies of Scale and Scope

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  • Alfons Oude Lansink
  • Spiro Stefanou

Abstract

This article applies the adjustment cost framework to the case of area allocation by simultaneously determining the levels of input demand and output supply. Dynamic measures of economies of scale and scope are defined for output‐specific areas. An application to a rotating sample of Dutch cash crops reveals that farmers have a strong incentive for specialisation, but that large adjustment costs for area allocation resulting in small adjustments toward the optimal level prevent them from doing so.

Suggested Citation

  • Alfons Oude Lansink & Spiro Stefanou, 2001. "Dynamic Area Allocation and Economies of Scale and Scope," Journal of Agricultural Economics, Wiley Blackwell, vol. 52(3), pages 38-52, September.
  • Handle: RePEc:bla:jageco:v:52:y:2001:i:3:p:38-52
    DOI: 10.1111/j.1477-9552.2001.tb00937.x
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    References listed on IDEAS

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    Cited by:

    1. Alain Carpentier & Elodie Letort, 2010. "Simple econometric models for short term production choices in cropping systems," Working Papers SMART 10-11, INRAE UMR SMART.
    2. Alain Carpentier & Elodie Letort, 2014. "Multicrop Production Models with Multinomial Logit Acreage Shares," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 59(4), pages 537-559, December.
    3. Bareille, Francois & Letort, Elodie & Dupraz, Pierre, 2017. "How Do Farmers Manage Their Biodiversity Through Time? A Dynamic Acreage Allocation Model With Productive Feedback," 2017 International Congress, August 28-September 1, 2017, Parma, Italy 260894, European Association of Agricultural Economists.
    4. Carpentier, Alain & Gohin, Alexandre, 2015. "On the economic theory of crop rotations: value of the crop rotation effects and implications on acreage choice modeling," Working Papers 205299, Institut National de la recherche Agronomique (INRA), Departement Sciences Sociales, Agriculture et Alimentation, Espace et Environnement (SAE2).
    5. Carpentier, Alain & Gohin, Alexandre, 2014. "Accounting for crop rotations in acreage choice modeling: a tractable modeling framework," 2014 International Congress, August 26-29, 2014, Ljubljana, Slovenia 182799, European Association of Agricultural Economists.
    6. Letort, Elodie & Carpentier, Alain, 2009. "On Modelling Acreage Decisions within the Multinomial Logit Framework," 2009 Conference, August 16-22, 2009, Beijing, China 51615, International Association of Agricultural Economists.
    7. Alain Carpentier & Elodie Letort, 2009. "Modeling acreage decisions within the multinomial Logit framework," Working Papers SMART 09-17, INRAE UMR SMART.
    8. Bareille, François & Dupraz, Pierre, 2016. "Biodiversity productive effects in milk farms of western France: a multi-output primal system," 149th Seminar, October 27-28, 2016, Rennes, France 244774, European Association of Agricultural Economists.
    9. Frederic Ang & Pieter Jan Kerstens, 2016. "To Mix or Specialise? A Coordination Productivity Indicator for English and Welsh farms," Journal of Agricultural Economics, Wiley Blackwell, vol. 67(3), pages 779-798, September.
    10. Singbo, Alphonse G. & Emvalomatis, Grigorios & Alfons, Oude Lansink, 2013. "Assessing the impact of crop specialization on farms’ performance in vegetables farming in Benin: a non-neutral stochastic frontier approach," 2013 Annual Meeting, August 4-6, 2013, Washington, D.C. 149172, Agricultural and Applied Economics Association.
    11. Carpentier, Alain & Gohin, Alexandre & Letort, Elodie, 2011. "Accounting for agronomic rotations in crop production: A theoretical investigation and an empirical modeling framework," 2011 Annual Meeting, July 24-26, 2011, Pittsburgh, Pennsylvania 103431, Agricultural and Applied Economics Association.

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