• Graduate Program
    • Why study Business Data Science?
    • Research Master
    • Admissions
    • Facilities
    • Browse our Courses
    • PhD Vacancies
  • Research
  • Browse our Courses
  • Events
    • Events Calendar
    • Events archive
    • Tinbergen Institute Lectures
    • Summer School
      • Deep Learning
      • Economics of Blockchain and Digital Currencies
      • Foundations of Machine Learning with Applications in Python
      • Marketing Research with Purpose
      • Modern Toolbox for Spatial and Functional Data
      • Sustainable Finance
      • Tuition Fees and Payment
      • Tinbergen Institute Summer School Program
    • Annual Tinbergen Institute Conference archive
  • Summer School
  • News
  • Alumni
Home | Events | Uneven buffering of U.S. maize yields against extreme heat - a time-varying coefficient panel approach
Seminar

Uneven buffering of U.S. maize yields against extreme heat - a time-varying coefficient panel approach


  • Location
    Erasmus University Rotterdam, Campus Woudestein, ET-14
    Rotterdam
  • Date and time

    March 26, 2026
    12:00 - 13:00

Abstract

U.S. maize production supplies one-third of the global harvest and faces escalating risks from extreme weather. Despite decades of technological advances intended to enhance climate resilience, how large-scale yield sensitivity to temperature and rainfall has evolved remains poorly understood. Here, we track changing responses of county-level maize yields to temperature and precipitation across the U.S. Corn Belt from 1951 to 2024 using a time-varying coefficient panel regression model. Overall, we find that the combined effects of technological progress, management changes, irrigation expansion, and policy measures have delivered only partial and geographically uneven protection against rising heat, leaving constant or growing vulnerabilities in key producing regions. These findings underscore the need for regionally targeted strategies to safeguard maize productivity as heat extremes intensify. Joint paper with Rick Geling, Raed Hamed and Corey Lesk.