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  • Multi-Output Productivity Change for Korean Agriculture: Non-Frontier Primal Measure with Farm-Level Panel Data
  • 보고서 이미지 없음

    저자
    강혜정
    등록일
    2007.11.01

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  • This paper analyzes the productivity growth in Korean agriculture with data on multiple crops over the five years from 1998 to 2002. Measurements are obtained from the estimation of a non-frontier multi-output production function. Multi-output production technology is characterized with a transforma...

  • 목차

    • I. Introduction
      II. Specification of Multi-output Primal Production Technology
      III. Analytical Framework
      IV. Data and Variables
      V. Empirical Implementation
      VI. Estimation Results
      VII. Conclusion Remarks
    • I. Introduction
      II. Specification of Multi-output Primal Production Technology
      III. Analytical Framework
      IV. Data and Variables
      V. Empirical Implementation
      VI. Estimation Results
      VII. Conclusion Remarks

    요약문

    This paper analyzes the productivity growth in Korean agriculture with data on multiple crops over the five years from 1998 to 2002. Measurements are obtained from the estimation of a non-frontier multi-output production function. Multi-output production technology is characterized with a transformation function. For empirical analysis, this study employs the generalized linear transformation function, which extends a linear functional form by allowing a full set of interactions among arguments in the function. The results find that technological change has led a significant productivity change. Larger farms experience the highest rate of productivity growth by the greatest rate of scale effect. More human capital also leads higher productivity growth rates.

    This paper analyzes the productivity growth in Korean agriculture with data on multiple crops over the five years from 1998 to 2002. Measurements are obtained from the estimation of a non-frontier multi-output production function. Multi-output production technology is characterized with a transformation function. For empirical analysis, this study employs the generalized linear transformation function, which extends a linear functional form by allowing a full set of interactions among arguments in the function. The results find that technological change has led a significant productivity change. Larger farms experience the highest rate of productivity growth by the greatest rate of scale effect. More human capital also leads higher productivity growth rates.

    저자정보

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    저자소개
    강혜정 (Kang, Hyejung)

    저자에게 문의

    이미지가 없습니다

    저자소개
    강혜정 (Kang, Hyejung)
    저자에게 문의

    보고서 이미지

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