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Impact of climate change on global agricultural markets under different shared socioeconomic pathways. (2021). Elobeid, Amani ; Carriquiry, Miguel ; Dumortier, Jerome.
In: Agricultural Economics.
RePEc:bla:agecon:v:52:y:2021:i:6:p:963-984.

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References

References cited by this document

  1. Arora, G., Feng, H., Anderson, C. J., & Hennessy, D. A. (2020). Evidence of climate change impacts on crop comparative advantage and land use. Agricultural Economics, 51(2), 221–236. https://doi.org/10.1111/agec.12551.

  2. Auffhammer, M., Hsiang, S. M., Schlenker, W., & Sobel, A. (2013). Using weather data and climate model output in economic analyses of climate change. Review of Environmental Economics and Policy, 7(2), 181–198. https://doi.org/10.1093/reep/ret016.

  3. Baker, J. S., Havlík, P., Beach, R., Leclère, D., Schmid, E., Valin, H., & McFarland, J. (2018). Evaluating the effects of climate change on US agricultural systems: Sensitivity to regional impact and trade expansion scenarios. Environmental Research Letters, 13(064019), 1–10. https://doi.org/10.1088/1748‐9326/aac1c2.
    Paper not yet in RePEc: Add citation now
  4. Baldos, U. L. C., & Hertel, T. W. (2015). The role of international trade in managing food security risks from climate change. Food Security, 7(2), 275–290. https://doi.org/10.1007/s12571‐015‐0435‐z.
    Paper not yet in RePEc: Add citation now
  5. Baldos, U. L. C., Fuglie, K. O., & Hertel, T. W. (2020). The research cost of adapting agriculture to climate change: A global analysis to 2050. Agricultural Economics, 51(2), 207–220. https://doi.org/10.1111/agec.12550.

  6. Baldos, U. L. C., Hertel, T. W., & Moore, F. C. (2019). Understanding the spatial distribution of welfare impacts of global warming on agriculture and its drivers. American Journal of Agricultural Economics, 101(5), 1455–1472. https://doi.org/10.1093/ajae/aaz027.

  7. Brown, M. E., Carr, E. R., Grace, K. L., Wiebe, K., Funk, C. C., Attavanich, W., & Buja, L. (2017). Do markets and trade help or hurt the global food system adapt to climate change? Food Policy, 68, 154–159. https://doi.org/10.1016/j.foodpol.2017.02.004.

  8. Carraro, C. (2016). Climate change: scenarios, impacts, policy, and development opportunities. Agricultural Economics, 47(S1), 149–157. https://doi.org/10.1111/agec.12306.

  9. Carriquiry, M., Elobeid, A., Dumortier, J., & Goodrich, R. (2020). Incorporating sub‐national Brazilian agricultural production and land‐use into U.S. biofuel policy evaluation. Applied Economic Perspectives and Policy, 42(3), 497–523. https://doi.org/10.1093/aepp/ppy033.
    Paper not yet in RePEc: Add citation now
  10. Chen, M., Vernon, C. R., Graham, N. T., Hejazi, M., Huang, M., Cheng, Y., & Calvin, K. (2020). Global land use for 2015–2100 at 0.05∘ resolution under diverse socioeconomic and climate scenarios. Scientific Data, 7(320), 1–11. https://doi.org/10.1038/s41597‐020‐00669‐x.
    Paper not yet in RePEc: Add citation now
  11. Ciscar, J.‐C., Fisher‐Vanden, K., & Lobell, D. B. (2018). Synthesis and review: An inter‐method comparison of climate change impacts on agriculture. Environmental Research Letters, 13(070401), 1–5. https://doi.org/10.1088/1748‐9326/aac7cb.
    Paper not yet in RePEc: Add citation now
  12. Clapp, J. (2017). Food self‐sufficiency: Making sense of it, and when it makes sense. Food Policy, 66, 88–96. https://doi.org/10.1016/j.foodpol.2016.12.001.

  13. Costinot, A., Donaldson, D., & Smith, C. (2016). Evolving comparative advantage and the impact of climate change in agricultural markets: Evidence from 1.7 million fields around the world. Journal of Political Economy, 124(1), 205–248. https://doi.org/10.1086/684719.

  14. D'Agostino, A. L., & Schlenker, W. (2016). Recent weather fluctuations and agricultural yields: Implications for climate change. Agricultural Economics, 47(S1), 159–171. https://doi.org/10.1111/agec.12315.

  15. Deryng, D., Conway, D., Ramankutty, N., Price, J., & Warren, R. (2014). Global crop yield response to extreme heat stress under multiple climate change futures. Environmental Research Letters, 9, 034011. https://doi.org/10.1088/1748‐9326/9/3/034011.
    Paper not yet in RePEc: Add citation now
  16. Doelman, J. C., Stehfest, E., Tabeau, A., van Meijl, H., Lassaletta, L., Gernaat, D. E., Hermans, K., Harmsen, M., Daioglou, V., Biemans, H., van der Sluis, S., & van Vuuren, D. P. (2018). Exploring SSP land‐use dynamics using the IMAGE model: Regional and gridded scenarios of land‐use change and land‐based climate change mitigation. Global Environmental Change, 48, 119–135. https://doi.org/10.1016/j.gloenvcha.2017.11.014.
    Paper not yet in RePEc: Add citation now
  17. Dumortier, J., Carriquiry, M., & Elobeid, A. (2021). Where does all the biofuel go? Fuel efficiency gains and its effects on global agricultural production. Energy Policy, 148(A), 111090. https://doi.org/10.1016/j.enpol.2020.111909.

  18. Dumortier, J., Dokoohaki, H., Elobeid, A., Hayes, D. J., Laird, D., & Miguez, F. E. (2020). Global land‐use and carbon emission implications from biochar application to cropland in the United States. Journal of Cleaner Production, 258(120684), 1–10. https://doi.org/10.1016/j.jclepro.2020.120684.
    Paper not yet in RePEc: Add citation now
  19. Dumortier, J., Hayes, D. J., Carriquiry, M., Dong, F., Du, X., Elobeid, A., Fabiosa, J. F., & Tokgoz, S. (2011). Sensitivity of carbon emission estimates from indirect land‐use change. Applied Economic Perspectives and Policy, 33(3), 428–448. https://doi.org/10.1093/aepp/ppr015.
    Paper not yet in RePEc: Add citation now
  20. Dumortier, J., Hayes, D. J., Carriquiry, M., Dong, F., Du, X., Elobeid, A., Fabiosa, J. F., Martin, P. A., & Mulik, K. (2012). The effects of potential changes in United States beef production on global grazing systems and greenhouse gas emissions. Environmental Research Letters, 7(2), 024023. https://doi.org/10.1088/1748‐9326/7/2/024023.

  21. Elobeid, A., & Tokgoz, S. (2008). Removing distortions in the U.S. ethanol market: What does it imply for the United States and Brazil? American Journal of Agricultural Economics, 90(4), 918–932. https://doi.org/10.1111/j.1467‐8276.2008.01158.x.

  22. Elobeid, A., Carriquiry, M., & Fabiosa, J. F. (2012). Socioeconomic and environmental impacts of biofuels: Evidence from developing nations, chapter Implications of global ethanol expansion on Brazilian regional land use, (pp. 171–190). Cambridge University Press.
    Paper not yet in RePEc: Add citation now
  23. Fischer, G., Shah, M., Tubiello, F. N., & van Velhuizen, H. (2005). Socio‐economic and climate change impacts on agriculture: An integrated assessment, 1990–2080. Philosophical Transactions of the Royal Society, 360, 2067–2083. https://doi.org/10.1098/rstb.2005.1744.
    Paper not yet in RePEc: Add citation now
  24. Fujimori, S., Hasegawa, T., Masui, T., Takahashi, K., Herran, D. S., Dai, H., Hijioka, Y., & Kainuma, M. (2017). SSP3: AIM implementation of Shared Socioeconomic Pathways. Global Environmental Change, 42, 268–283. https://doi.org/10.1016/j.gloenvcha.2016.06.009.
    Paper not yet in RePEc: Add citation now
  25. Gouel, C., & Laborde, D. (2018). The crucial role of international trade in adaptation to climate change. Working Paper 25221, National Bureau of Economic Research.

  26. Hasegawa, T., Fujimori, S., Havlík, P., Valin, H., Bodirsky, B. L., Doelman, J. C., & Witzke, P. (2018). Risk of increased food insecurity under stringent global climate change mitigation policy. Nature Climate Change, 8, 699–703. https://doi.org/10.1038/s41558‐018‐0230‐x.

  27. Hasegawa, T., Fujimori, S., Takahashi, K., & Masui, T. (2015). Scenarios for the risk of hunger in the twenty‐first century using shared socioeconomic pathways. Environmental Research Letters, 10(1), 1–8. https://doi.org/10.1088/1748‐9326/10/1/014010.
    Paper not yet in RePEc: Add citation now
  28. Hausfather, Z., & Peters, G. P. (2020). Rcp8.5 is a problematic scenario for near‐term emissions. Proceedings of the National Academy of Sciences, 117(45), 27791–27792. https://doi.org/10.1073/pnas.2017124117.
    Paper not yet in RePEc: Add citation now
  29. Hertel, T. W., & Lobell, D. B. (2014). Agricultural adaptation to climate change in rich and poor countries: Current modeling practice and potential for empirical contributions. Energy Economics, 46, 562–575. https://doi.org/10.1016/j.eneco.2014.04.014.

  30. Hertel, T. W., Burke, M. B., & Lobell, D. B. (2010). The poverty implications of climate‐induced crop yield changes by 2030. Global Environmental Change, 20, 577–585. https://doi.org/10.1016/j.gloenvcha.2010.07.001.

  31. Holt, M. T. (1999). A linear approximate acreage allocation model. Journal of Agricultural and Resource Economics, 24(2), 1–15.

  32. Huffman, W. E., Jin, Y., & Xu, Z. (2018). The economic impacts of technology and climate change: New evidence from U.S. corn yields. Agricultural Economics, 49(4), 463–479. https://doi.org/10.1111/agec.12429.

  33. Iizumi, T., Furuya, J., Shen, Z., Kim, W., Okada, M., Fujimori, S., & Nishimori, M. (2017). Responses of crop yield growth to global temperature and socioeconomic changes. Scientific Reports, 7, 7800. https://doi.org/10.1038/s41598‐017‐08214‐4.
    Paper not yet in RePEc: Add citation now
  34. IPCC (2019) Climate Change and Land: an IPCC special report on climate change, desertification, land degradation, sustainable land management, food security, and greenhouse gas fluxes in terrestrial ecosystems [P.R. Shukla, J. Skea, E. Calvo Buendia, V. Masson‐Delmotte, H.‐O. Pörtner, D. C. Roberts, P. Zhai, R. Slade, S. Connors, R. van Diemen, M. Ferrat, E. Haughey, S. Luz, S. Neogi, M. Pathak, J. Petzold, J. Portugal Pereira, P. Vyas, E. Huntley, K. Kissick, M. Belkacemi, J. Malley, (eds.)]. In press.
    Paper not yet in RePEc: Add citation now
  35. KC, S., & Lutz, W. (2017). The human core of the shared socioeconomic pathways: Population scenarios by age, sex and level of education for all countries to 2100. Global Environmental Change, 42, 181–192. https://doi.org/10.1016/j.gloenvcha.2014.06.004.
    Paper not yet in RePEc: Add citation now
  36. Müller, C., & Robertson, R. D. (2014). Projecting future crop productivity for global economic modeling. Agricultural Economics, 45, 37–50. https://doi.org/10.1111/agec.12088.

  37. Müller, C., Cramer, W., Hare, W. L., & Lotze‐Campen, H. (2011). Climate change risks for African agriculture. Proceedings of the National Academy of Sciences, 108(11), 4313–4315. https://doi.org/10.1073/pnas.1015078108.
    Paper not yet in RePEc: Add citation now
  38. Nelson, G. C., Valin, H., Sands, R. D., Havlík, P., Ahammad, H., Deryng, D., & Willenbockel, D. (2014). Climate change effects on agriculture: Economic responses to biophysical shocks. Proceedings of the National Academy of Sciences, 111(9), 3274–3279. https://doi.org/10.1073/pnas.1222465110.
    Paper not yet in RePEc: Add citation now
  39. Nelson, G. C., van der Mensbrugghe, D., Ahammad, H., Blanc, E., Calvin, K., Hasegawa, T., & Willenbockel, D. (2014). Agriculture and climate change in global scenarios: Why don't the models agree. Agricultural Economics, 45(1), 85–101. https://doi.org/10.1111/agec.12091.

  40. O'Neill, B. C., Kriegler, E., Riahi, K., Ebi, K. L., Hallegatte, S., Carter, T. R., & van Vuuren, D. P. (2014). A new scenario framework for climate change research: The concept of shared socioeconomic pathways. Climatic Change, 12(3), 387–400. https://doi.org/10.1007/s10584‐013‐0905‐2.

  41. Popp, A., Calvin, K., Fujimori, S., Havlik, P., Humpenöder, F., Stehfest, E., & van Vuuren, D. P. (2017). Land‐use futures in the shared socio‐economic pathways. Global Environmental Change, 42, 331–345. https://doi.org/10.1016/j.gloenvcha.2016.10.002.
    Paper not yet in RePEc: Add citation now
  42. Portmann, F. T., Siebert, S., & Döll, P. (2010). MIRCA2000—Global monthly irrigated and rainfed crop areas around the year 2000: A new high‐resolution data set for agricultural and hydrological modeling. Global Biogeochemical Cycles, 24(1), 1–24. https://doi.org/10.1029/2008GB003435.
    Paper not yet in RePEc: Add citation now
  43. Riahi, K., van Vuuren, D. P., Kriegler, E., Edmonds, J., O'Neill, B. C., Fujimori, S., & Tavoni, M. (2017). The shared socioeconomic pathways and their energy, land use, and greenhouse gas emissions implications: An overview. Global Environmental Change, 42, 153–168. https://doi.org/10.1016/j.gloenvcha.2016.05.009.
    Paper not yet in RePEc: Add citation now
  44. Ritchie, J., & Dowlatabadi, H. (2017a). The 1000 GtC coal question: Are cases of vastly expanded future coal combustion still plausible? Energy Economics, 65, 16–31. https://doi.org/10.1016/j.eneco.2017.04.015.

  45. Ritchie, J., & Dowlatabadi, H. (2017b). Why do climate change scenarios return to coal? Energy, 140(1), 1276–1291. https://doi.org/10.1016/j.energy.2017.08.083.

  46. Rosenzweig, C., Elliott, J., Deryng, D., Ruane, A. C., Müller, C., Arneth, A., Boote, K. J., Folberth, C., Glotter, M., Khabarov, N., Neumann, K., Piontek, F., Pugh, T. A. M., Schmid, E., Stehfest, E., Yang, H., & Jones, J. W. (2014). Assessing agricultural risks of climate change in the 21st century in a global gridded crop model intercomparison. Proceedings of the National Academy of Sciences, 111(9), 3268–3273. https://doi.org/10.1073/pnas.1222463110.
    Paper not yet in RePEc: Add citation now
  47. Schauberger, B., Archontoulis, S., Arneth, A., Balkovic, J., Ciais, P., Deryng, D., Elliott, J., Folberth, C., Khabarov, N., Müller, C., Pugh, T. A. M., Rolinski, S., Schaphoff, S., Schmid, E., Wang, X., Schlenker, W., & Frieler, K. (2017). Consistent negative response of US crops to high temperatures in observations and crop models. Nature Communications, 8(13931), 1–9. https://doi.org/10.1038/ncomms13931.

  48. Schleussner, C.‐F., Deryng, D., Müller, C., Elliott, J., Saeed, F., Folberth, C., & Rogelj, J. (2018). Crop productivity changes in 1.5∘ C and 2∘ C worlds under climate sensitivity uncertainty. Environmental Research Letters, 13, 064007. https://doi.org/10.1088/1748‐9326/aab63b.
    Paper not yet in RePEc: Add citation now
  49. Schmitz, C., van Meijl, H., Kyle, P., Nelson, G. C., Fujimori, S., Gurgel, A., & Valin, H. (2014). Land‐use change trajectories up to 2050: Insights from a global agro‐economic model comparison. Agricultural Economics, 45(1), 69–84. https://doi.org/10.1111/agec.12090.

  50. Smith, V. H., & Glauber, J. W. (2020). Trade, policy, and food security. Agricultural Economics, 51(1), 159–171. https://doi.org/10.1111/agec.12547.

  51. Stehfest, E., van Zeist, W.‐J., Valin, H., Havlik, P., Popp, A., Kyle, P., Tabeau, A., Mason‐D'Croz, D., Hasegawa, T., Bodirsky, B. L., Calvin, K., Doelman, J. C., Fujimori, S., Humpenöder, F., Lotze‐Campen, H., van Meijl, H., & Wiebe, K. (2019). Key determinants of global land‐use projections. Nature Communications, 10(2166), 1–10. https://doi.org/10.1038/s41467‐019‐09945‐w.
    Paper not yet in RePEc: Add citation now
  52. Stevanović, M., Popp, A., Lotze‐Campen, H., Dietrich, J. P., Müller, C., Bonsch, M., Schmitz, C., Bodirsky, B. L., Humpenöder, F., & Weindl, I. (2016). The impact of high‐end climate change on agricultural welfare. Science Advances, 2(8), e1501452. https://doi.org/10.1126/sciadv.1501452.
    Paper not yet in RePEc: Add citation now
  53. Tack, J., Coble, K., & Barnett, B. (2018). Warming temperatures will likely induce higher premium rates and government outlays for the U.S. crop insurance program. Agricultural Economics, 49(5), 635–647. https://doi.org/10.1111/agec.12448.

  54. Valin, H., Sands, R. D., van der Mensbrugghe, D., Nelson, G. C., Ahammad, H., Blanc, E., & Willenbockel, D. (2014). The future of food demand: Understanding differences in global economic models. Agricultural Economics, 45(1), 51–677. https://doi.org/10.1111/agec.12089.

  55. van Meijl, H., Havlik, P., Lotze‐Campen, H., Stehfest, E., Witzke, P., Dominguez, I. P., & van Zeist, W.‐J. (2018). Comparing impacts of climate change and mitigation on global agriculture by 2050. Environmental Research Letters, 13(064021), 1–19. https://doi.org/10.1088/1748‐9326/aabdc4.
    Paper not yet in RePEc: Add citation now
  56. van Vuuren, D. P., Edmonds, J., Kainuma, M., Riahi, K., Thomson, A., Hibbard, K., Hurtt, G. C., Kram, T., Krey, V., Lamarque, J.‐F., Masui, T., Meinshausen, M., Nakicenovic, N., Smith, S. J., & Rose, S. K. (2011). The representative concentration pathways: An overview. Climatic Change, 109(1), 5–31. https://doi.org/10.1007/s10584‐011‐0148‐z.

  57. van Vuuren, D. P., Kriegler, E., O'Neill, B. C., Ebi, K. L., Riahi, K., Carter, T. R., Edmonds, J., Hallegatte, S., Kram, T., Mathur, R., & Winkler, H. (2014). A new scenario framework for climate change research: Scenario matrix architecture. Climatic Change, 122(3), 373–386. https://doi.org/10.1007/s10584‐013‐0906‐1.

  58. van Zeist, W.‐J., Stehfest, E., Doelman, J. C., Valin, H., Calvin, K., Fujimori, S., Hasegawa, T., Havlik, P., Humpenöder, F., Kyle, P., Lotze‐Campen, H., Mason‐D'Croz, D., van Meijl, H., Popp, A., Sulser, T. B., Tabeau, A., Verhagen, W., & Wiebe, K. (2020). Are scenario projections overly optimistic about future yield progress? Global Environmental Change, 64, 102–120. https://doi.org/10.1016/j.gloenvcha.2020.102120.
    Paper not yet in RePEc: Add citation now
  59. Villoria, N. B., Elliott, J., Müller, C., Shin, J., Zhao, L., & Songe, C. (2016). Rapid aggregation of global gridded crop model outputs to facilitate cross‐disciplinary analysis of climate change impacts in agriculture. Environmental Modelling & Software, 75, 193–201. https://doi.org/10.1016/j.envsoft.2015.10.016.
    Paper not yet in RePEc: Add citation now
  60. von Lampe, M., Willenbockel, D., Ahammad, H., Blanc, E., Cai, Y., Calvin, K., Fujimori, S., Hasegawa, T., Havlik, P., Heyhoe, E., Kyle, P., Lotze‐Campen, H., d'Croz, D. M., Nelson, G. C., Sands, R. D., Schmitz, C., Tabeau, A., Valin, H., van der Mensbrugghe, D., & van Meijl, H. (2014). Why do global long‐term scenarios for agriculture differ? An overview of the AgMIP Global Economic Model Intercomparison. Agricultural Economics, 45(1), 3–20. https://doi.org/10.1111/agec.12086.

  61. Wiebe, K., Lotze‐Campen, H., Sands, R., Tabeau, A., van der Mensbrugghe, D., Biewald, A., Bodirsky, B., Islam, S., Kavallari, A., Mason‐D'Croz, D., Müller, C., Popp, A., Robertson, R., Robinson, S., van Meijl, H., & Willenbockel, D. (2015). Climate change impacts on agriculture in 2050 under a range of plausible socioeconomic and emissions scenarios. Environmental Research Letters, 10(085010), 1–15. https://doi.org/10.1088/1748‐9326/10/8/085010.
    Paper not yet in RePEc: Add citation now
  62. Zhao, C., Liu, B., Piao, S., Wang, X., Lobell, D. B., Huang, Y., Huang, M., Yao, Y., Bassu, S., Ciais, P., Durand, J.‐L., Elliott, J., Ewert, F., Janssens, I. A., Li, T., Lin, E., Liu, Q., Martre, P., Müller, C., … Asseng, S. (2017). Temperature increase reduces global yields of major crops in four independent estimates. Proceedings of the National Academy of Sciences, 114(35), 9326–9331. https://doi.org/10.1073/pnas.1701762114.
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  2. Double cropping as an adaptation to climate change in the United States. (2025). Ortizbobea, Ariel ; Mrel, Pierre ; Gammans, Matthew.
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  3. Climate-induced changes in agricultural land use: parcel-level evidence from California’s Central Valley. (2025). Shugart, Matthew S ; Dinar, Ariel ; Nemati, Mehdi ; Kishore, Siddharth ; Struthers, Cory L ; MacKenzie, Scott.
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  6. The technical and economic effects of biodiversity standards on wheat production. (2024). Latruffe, Laure ; Duvaleix, Sabine ; Lassalas, Marie.
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  7. Carbon dioxide fertilization, carbon neutrality, and food security. (2024). Liu, Ziheng ; Lu, Qinan.
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  9. Interactions Between U.S. Vehicle Electrification, Climate Change, and Global Agricultural Markets. (2023). Elobeid, Amani ; Carriquiry, Miguel ; Dumortier, Jerome.
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  10. Early growing season weather variation, expectation formation and agricultural land allocation decisions in Ethiopia. (2023). Ahmed, Musa ; Gassmann, Franziska ; Tesfaye, Wondimagegn Mesfin.
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  11. Delayed monsoon, irrigation and crop yields. (2023). Birthal, Pratap ; Amale, Hardeep Singh ; Negi, Digvijay Singh.
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  12. Coastal agricultural land use response to sea level rise and saltwater intrusion. (2023). Thompson, Alexandra ; Newburn, David ; Han, Xianru ; Epanchin-Niell, Rebecca S ; Gedan, Keryn ; Tully, Kate ; Post, Jessica ; Miller, Jarrod.
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  13. Heterogeneous impacts of climate change on crop yields across altitudes in Ethiopia. (2022). Gatiso, Tsegaye.
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  14. Agricultural diversification, productivity, and food security across time and space. (2022). di Falco, Salvatore ; Chavas, Jeanpaul ; de Luca, Giovanni ; Rivieccio, Giorgia ; Capitanio, Fabian.
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  15. Farm-level responses to weather trends. (2022). Wimmer, Stefan ; Ringer, Robert ; Schmitt, Jonas ; Stetter, Christian.
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  16. Within Growing Season Weather Variability and Land Allocation Decisions: Evidence from Maize Farmers in Ethiopia. (2022). Ahmed, Musa ; Gassmann, Franziska ; Tesfaye, Wondimagegn Mesfin.
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  17. Estimation of crop yield density conditional on input choices for smallholder farms using a BetaIV framework. (2022). Arora, Gaurav ; Shukla, Sumedha ; Agarwal, Sandip K.
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  18. Climate change and land-use in Indian agriculture. (2021). Negi, Digvijay ; Birthal, Pratap ; Bhan, Subhash C ; Hazrana, Jaweriah.
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  19. Impact of climate change on global agricultural markets under different shared socioeconomic pathways. (2021). Elobeid, Amani ; Carriquiry, Miguel ; Dumortier, Jerome.
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  20. Within Growing Season Weather Variability and Adaptation in Agriculture: Evidence from Cropping Patterns of Ethiopia. (2021). Ahmed, Musa ; Gassmann, Franziska ; Tesfaye, Wondimagegn ; Dietrich, Stephan ; Hasen, Musa.
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  21. Impact of Climate Change on Global Agricultural Markets under Different Shared Socioeconomic Pathways. (2020). Elobeid, Amani ; Dumortier, Jerome ; Carriquiry, Miguel.
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