AI Article Synopsis

  • A method using orthogonal conic combinatorial design was applied to assess high-yield agricultural practices for C. longa.
  • Increasing plant density per mu and delaying the sowing date led to a 50% increase in yield.
  • A mathematical model was created to predict yields based on plant density and sowing date, facilitating the exploration of optimal agronomic strategies.

Article Abstract

A method of orthogonal conic combinatorial design has been employed in the study of high-yield agronomic measures of C. longa. The results show that by increasing plants/mu and postponing sowing date, the yield is 50% higher than before, mathematical model of yield on plants/mu and sowing date were established, which can be used to predict the yield and explore optimal agronomic measures.

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