dc.contributor.author | Boote, K.J. |
dc.contributor.author | Adam, M. |
dc.contributor.author | Ahmad, I. |
dc.contributor.author | Ahmad, S. |
dc.contributor.author | Cammarano, D. |
dc.contributor.author | Chattha, A.A. |
dc.contributor.author | Claessens, L. |
dc.contributor.author | Dimes, J. |
dc.contributor.author | Durand, W. |
dc.contributor.author | Freduah, B.S. |
dc.contributor.author | Gummadi, S. |
dc.contributor.author | Hargreaves, J. |
dc.contributor.author | Hoogenboom, G. |
dc.contributor.author | Homann-Kee Tui, S. |
dc.contributor.author | Jones, J.W. |
dc.contributor.author | Khaliq, T. |
dc.contributor.author | MacCarthy, D.S. |
dc.contributor.author | Masikati, P. |
dc.contributor.author | McDermid, S. |
dc.contributor.author | Murthy, K.D. |
dc.contributor.author | Nenkem, N. |
dc.contributor.author | Porter, C. |
dc.contributor.author | Ruane, A.C. |
dc.contributor.author | Subash, N. |
dc.contributor.author | Thorburn, P. |
dc.contributor.author | Traore, S. |
dc.contributor.author | Vellingiri, G. |
dc.contributor.author | Wajid, S.A. |
dc.date.accessioned | 2022-09-19T10:26:02Z |
dc.date.available | 2022-09-19T10:26:02Z |
dc.date.issued | 2021 |
dc.identifier.citation | Boote, K.J., Adam, M., Ahmad, I., Ahmad, S., Cammarano, D., Chattha, A.A., ... & Wajid, S.A. (2021). Understanding differences in climate sensitivity simulations of APSIM and DSSAT crop models. In C. Rosenzweig, C.Z. Mutter and E.M. Contreras, Handbook of climate change and agroecosystems: climate change and farming system planning in Africa and south Asia: AgMIP stakeholder-driven research. Singapore, Asia: World Scientific Publishing, (p. 15-46). |
dc.identifier.isbn | 978-1-78326-563-3 |
dc.identifier.uri | https://hdl.handle.net/20.500.12478/7770 |
dc.format.extent | 15-46 |
dc.language.iso | en |
dc.publisher | World Scientific |
dc.subject | Climate Change |
dc.subject | Crop Production |
dc.subject | Agricultural Productivity |
dc.subject | Organic Matter |
dc.title | Understanding differences in climate sensitivity simulations of APSIM and DSSAT crop models |
dc.type | Book Chapter |
cg.contributor.crp | Maize |
cg.contributor.affiliation | University of Florida |
cg.contributor.affiliation | Asian Disaster Preparedness Center, Pakistan |
cg.contributor.affiliation | Bahauddin Zakariya University |
cg.contributor.affiliation | Purdue University |
cg.contributor.affiliation | University of Agriculture, Pakistan |
cg.contributor.affiliation | International Institute of Tropical Agriculture |
cg.contributor.affiliation | Wageningen University and Research Centre |
cg.contributor.affiliation | Bureau for Food and Agricultural Policy, South Africa |
cg.contributor.affiliation | University of Ghana |
cg.contributor.affiliation | International Rice Research Institute |
cg.contributor.affiliation | Commonwealth Scientific and Industrial Research Organization |
cg.contributor.affiliation | International Crops Research Institute for the Semi-Arid Tropics |
cg.contributor.affiliation | World Agroforestry Centre |
cg.contributor.affiliation | New York University |
cg.contributor.affiliation | Columbia University |
cg.coverage.hub | Eastern Africa Hub |
cg.researchtheme | Natural Resource Management |
cg.identifier.bibtexciteid | BOOTE:2021 |
cg.authorship.types | CGIAR and developing country institute |
cg.iitasubject | Agronomy |
cg.iitasubject | Crop Systems |
cg.iitasubject | Food Security |
cg.iitasubject | Plant Breeding |
cg.iitasubject | Plant Production |
cg.iitasubject | Smallholder Farmers |
cg.iitasubject | Soil Fertility |
cg.iitasubject | Value Chains |
cg.publicationplace | Singapore, Asia |
cg.accessibilitystatus | Limited Access |
cg.reviewstatus | Peer Review |
cg.usagerightslicense | Copyrighted; all rights reserved |
cg.targetaudience | Scientists |
cg.identifier.doi | https://dx.doi.org/10.1142/9781786348791_0002 |
cg.iitaauthor.identifier | Lieven Claessens: 0000-0003-2961-8990 |
cg.futureupdate.required | No |