Assessing the acceptance of the system of rice intensification among farmers in rainfed lowland rice region of Cambodia
暂无分享,去创建一个
[1] P. Varma. Adoption of System of Rice Intensification under Information Constraints: An Analysis for India , 2018 .
[2] N. Uphoff,et al. Experience with the system of rice intensification for sustainable rainfed paddy farming systems in India , 2017 .
[3] E. Tumusiime. Suitable for whom? The case of system of rice intensification in Tanzania , 2017 .
[4] K. Kobayashi,et al. Rice Yield Increase by the System of Rice Intensification is Dependent on Supplementary Water Availability in Rainfed Lowland Fields of Southern Cambodia , 2017 .
[5] Willem A. Stoop,et al. Modifying rice crop management to ease water constraints with increased productivity, environmental benefits, and climate-resilience , 2016 .
[6] S. Haefele,et al. Climate ready rice: Augmenting drought tolerance with best management practices , 2016 .
[7] Eiji Yamaji,et al. Labor requirements of system of rice intensification (SRI) in Cambodia , 2015, Paddy and Water Environment.
[8] Vidyāsthān Paṇtuaḥ Paṇtāl niṅ Srāvjrāv Ṭoempī Qabhivaḍḍhaṅ Kambujā,et al. Agricultural technological practices and gaps for climate change adaptation , 2015 .
[9] N. Uphoff,et al. Adoption, constraints and economic returns of paddy rice under the system of rice intensification in Mwea, Kenya , 2013 .
[10] R. Doi,et al. Feasibility of system of rice intensification practices in natural and socioeconomic contexts in Thailand , 2013 .
[11] D. P. Patel,et al. Productivity and socio-economic impact of system of rice intensification and integrated crop management over conventional methods of rice establishment in eastern Himalayas, India , 2013, Paddy and Water Environment.
[12] Kazushi Takahashi. The roles of risk and ambiguity in the adoption of the system of rice intensification (SRI): evidence from Indonesia , 2013, Food Security.
[13] L. S. Jensen,et al. The System of Rice Intensification: Adapted practices, reported outcomes and their relevance in Cambodia , 2012 .
[14] M. Qaim,et al. Understanding the adoption of system technologies in smallholder agriculture: The system of rice intensification (SRI) in Timor Leste , 2012 .
[15] H. Ibrahim,et al. Application of system of rice intensification practices in the arid environment of the Timbuktu region in Mali , 2011, Paddy and Water Environment.
[16] R. Adusumilli,et al. Potential of the system of rice intensification for systemic improvement in rice production and water use: the case of Andhra Pradesh, India , 2011, Paddy and Water Environment.
[17] Amir Kassam,et al. Comparing rice production systems: A challenge for agronomic research and for the dissemination of knowledge-intensive farming practices , 2009 .
[18] S. DeGloria,et al. Evaluation of system of rice intensification (SRI) component practices and their synergies on salt-affected soils , 2008 .
[19] Prem S. Bindraban,et al. Modified rice cultivation in Tamil Nadu, India: Yield gains and farmers' (lack of) acceptance , 2008 .
[20] N. Uphoff,et al. RESULTS OF DISSEMINATING THE SYSTEM OF RICE INTENSIFICATION WITH FARMER FIELD SCHOOL METHODS IN NORTHERN MYANMAR , 2007, Experimental Agriculture.
[21] S. K. Sinha,et al. Productivity impacts of the system of rice intensification (SRI): A case study in West Bengal, India , 2007 .
[22] E. Fernandes,et al. The effects of repeated soil wetting and drying on lowland rice yield with system of Rice Intensification (SRI) methods , 2006 .
[23] C. Barrett,et al. Better Technology, Better Plots, or Better Farmers? Identifying Changes in Productivity and Risk Among Malagasy Rice Farmers , 2004 .
[24] C. Barrett,et al. The disappointing adoption dynamics of a yield-increasing, low external-input technology: the case of SRI in Madagascar , 2003 .
[25] Christopher B. Barrett,et al. The complex dynamics of smallholder technology adoption: the case of SRI in Madagascar , 2003 .
[26] S. Miyagawa,et al. Effects of Environmental and Technical Factors on Rice Yield in Rain-fed Paddy Fields of Northeast Thailand , 1988 .