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51. Spatial and Temporal Uncertainty of Crop Yield Aggregations

54. Agricultural breadbaskets shift poleward given adaptive farmer behavior under climate change

55. Regional Disparities in the Beneficial Effects of Rising CO2 Emissions on Crop Water Productivity

56. Implications of Climate Mitigation for Future Agricultural Production

57. Quantitative assessment of agricultural sustainability reveals divergent priorities among nations

58. Climate change signal in global agriculture emerges earlier in new generation of climate and crop models

61. Large potential for crop production adaptation depends on available future varieties

62. Projecting Exposure to Extreme Climate Impact Events Across Six Event Categories and Three Spatial Scales

64. ESA Digital Twin Earth Precursor: Food Systems

66. Exploring uncertainties in global crop yield projections in a large ensemble of crop models and CMIP5 and CMIP6 climate scenarios

67. AgroTutor: A Mobile Phone Application Supporting Agricultural Sustainable Intensification

68. The GGCMI phase II emulators: global gridded crop model responses to changes in CO2, temperature, water, and nitrogen (version 1.0)

69. Potential yield simulated by Global Gridded Crop Models: what explains their difference

70. Measuring national socio-economic aspects of sustainable agriculture and the interactions with environmental indicators

71. The GGCMI Phase 2 experiment: global gridded crop model simulations under uniform changes in CO2 temperature, water, and nitrogen levels (protocol version 1.0)

72. The GGCMI Phase 2 emulators: global gridded crop model responses to changes in CO2 temperature, water, and nitrogen (version 1.0)

73. The GGCMI Phase II experiment: global gridded crop model simulations under uniform changes in CO2, temperature, water, and nitrogen levels (protocol version 1.0)

75. AgroTutor: A Mobile Phone Application Supporting Sustainable Agricultural Intensification

77. Agricultural breadbaskets shift poleward given adaptive farmer behavior under climate change.

83. Supplementary material to "The GGCMI phase II emulators: global gridded crop model responses to changes in CO2, temperature, water, and nitrogen (version 1.0)"

84. The GGCMI phase II emulators: global gridded crop model responses to changes in CO2, temperature, water, and nitrogen (version 1.0)

85. The GGCMI Phase II experiment: global gridded crop model simulations under uniform changes in CO2, temperature, water, and nitrogen levels (protocol version 1.0)

86. Supplementary material to "The GGCMI Phase II experiment: global gridded crop model simulations under uniform changes in CO2, temperature, water, and nitrogen levels (protocol version 1.0)"

87. Weather-induced crop failure events under climate change: a storyline approach.

88. A framework for the cross-sectoral integration of multi-model impact projections

89. Crop productivity changes in 1.5 degrees C and 2 degrees C worlds under climate sensitivity uncertainty

90. Fig. S3 from Coordinating AgMIP data and models across global and regional scales for 1.5°C and 2.0°C assessments

92. Understanding the weather signal in national crop-yield variability

93. Understanding the weather signal in national crop‐yield variability

94. Potential yield simulated by Global Gridded Crop Models: a process-based emulator to explain their differences.

95. The GGCMI phase II emulators: global gridded crop model responses to changes in CO2, temperature, water, and nitrogen (version 1.0).

96. The GGCMI Phase II experiment: global gridded crop model simulations under uniform changes in CO2, temperature, water, and nitrogen levels (protocol version 1.0).

97. Global patterns of crop yield stability under additional nutrient and water inputs

98. Evapotranspiration simulations in ISIMIP2a—Evaluation of spatio-temporal characteristics with a comprehensive ensemble of independent datasets

99. Crop productivity changes in 1.5 °C and 2 °C worlds under climate sensitivity uncertainty

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