Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 14 references without a DOI — listed, not checked
no DOI — not checkedBRASIL. Ministério da Agricultura, Pecuária e Abastecimento. Zoneamento Agrícola de Risco Climático. Retrieved July 20, 2014, from http://www.agricultura.gov.br/politica-agricola/zoneamento-agricola .
no DOI — not checkedCamargo, A.P., and P.C. Sentelhas. 1997. Avaliação do desempenho de diferentes métodos de estimativas da evapotranspiração potencial no Estado de São Paulo, Brasil. Revista Brasileira de Agrometeorologia, Santa Maria 5(1): 89–97.
no DOI — not checkedCintra, J.E., G.H. Ferreira, and R.P.C. Brasil. 2008. Viabilidade da irrigação suplementar na fase inicial de desenvolvimento da cana-de-açúcar (Saccharum ssp.) em regiões com déficit hídrico. Nucleus, Ituverava, Edição Especial 1: 111–119. doi: 10.3738/1982.2278.141 .
no DOI — not checkedCoelho, R.D., J.A. Lelis Neto, and A.C. Barros. 2009. Cana irrigada produz mais, mas custo de produção aumenta. In: Agrianual 2009: anuário da agricultura brasileira. FNP CONSULTORIA & COMÉRCIO, 240–2042. São Paulo.
no DOI — not checkedCONAB. 2014. Acompanhamento da Safra Brasileira: Cana-de-açúcar, Safra 2014/2015, primeiro levantamento. Brasília, p. 19.
no DOI — not checkedHargreaves, G.H. 1994. Simplified coefficients for estimating monthly solar radiation in North America and Europe, 12. Logan, Utah: Departmental Paper, Department Biology and Irrigation Engineering, Utah State University.
no DOI — not checkedIBGE. 2014. Banco de Dados Agregados. Sistema IBGE de Recuperação Automática—SIDRA. Retrieved July 20, 2014, from http://www.ibge.gov.br .
no DOI — not checkedINPE. 2014. Divisão de Sensoriamento Remoto. CANASAT: mapeamento da cana via imagens de satélites de observação da terra. São José dos Campos. Retrieved June 2, 2014, from http://www.dsr.inpe.br/laf/canasta .
no DOI — not checkedJones, C. A., M. K. Wegener, J. S. Russel, I.M. McLeod, and J.R. Williams. 1989. AUSCANE, Simulation of Australian sugarcane with EPIC. Division of Tropical Crops and Pastures. Canberra: CSIRO (Tech. Paper 29).
no DOI — not checkedLiu, D.L., and G. Kingston. 1995. QCANE: A simulation model of sugarcane growth and sugar accumulation: QCANE. In: Research and modeling approaches to assess sugarcane production opportunities and constraints, workshop proceedings, ed. Robertson, M.J., 25–29, University of Queensland, St. Lucia, Brisbane.
no DOI — not checkedMarin, F.R., P.J. Thorburn, D.S. Nassif, L.G. Costa, A.S. Rezende, and A.S. Andrade Jr. 2013. Evaluation of APSIM-SUGAR and DSSAT-CANEGRO for widely grown Brazilian sugarcane cultivar. In: Proceedings on congress of international society of sugarcane technologists, p. 28, São Paulo.
no DOI — not checkedSingels, A., M. Jones, and M. Van Der Berg. 2008. DSSAT v.4.5 CSM-CANEGRO: Sugarcane plant module; scientific documentation. Mount Edgecombe: International Consortium for Sugarcane Modeling. South African Sugarcane Research Institute, p. 34.
no DOI — not checkedVillegas, F.D., O.H. Daza, J.W. Jones, and F.W. Royce. 2005. CASUPRO: An industry-driven sugarcane model. ASAE paper no. 053025. ASAE, St. Joseph, MI.
no DOI — not checkedWallach, D., D. Makowski, and J.W. Jones. 2006. Working with dynamic crop models: Evaluation, analysis, parameterization and applications, 449. Amsterdam: Elsevier.
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