Harnessing Precision Agriculture Technologies for Eco-Friendly Crop Management: A Synthesis of Environmental Biology and Agriculture Perspectives
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Abstract
In This study investigates the adoption and impact of precision agriculture technologies within the context of sustainable farming practices. Employing a comprehensive methodology, including stratified random sampling, a structured questionnaire, and various statistical analyses, the research explores the intricate relationships between socio-economic factors, farmers' perceptions of precision agriculture, and the technology's practical implications on resource efficiency and crop yields. Gender-based differences, correlations with farming experience, and the impact on crop yields were scrutinized. Results indicate that while precision agriculture holds promise for enhancing resource efficiency and productivity, gender-specific nuances and the role of farming experience demand tailored interventions for a more inclusive and effective adoption. This study contributes nuanced insights to inform policy, practice, and future research in the realm of precision agriculture and sustainable farming.
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References
Andersson, E., & Tan, C. (2023). Aligning Agricultural Policies with Precision Agriculture: A Global Perspective. Agricultural Policy Journal, 55(1), 89-104.
Andersson, E., & Tan, C. (2023). Policy Frameworks for Precision Agriculture: A Comparative Analysis. Journal of Agricultural Policy Research, 50(4), 511-527.
Brown, A. R., & Nguyen, H. T. (2024). Barriers to Precision Agriculture Adoption: A Comparative Study of Developed and Developing Regions.Agricultural Innovation Research, 29(3), 345-362.
Brown, A. R., & Nguyen, H. T. (2024). Overcoming Technological Barriers: A Comprehensive Study on Precision Agriculture Adoption Constraints. Technological Innovation Research, 22(3), 401-419.
Chen, L., (2024). Reducing Ecological Footprint: Precision Agriculture in Pest Management. Journal of Applied Ecology, 61(1), 89-104.
FAO. (2020). Global Soil Degradation and Food Security: A Comprehensive Assessment. Food and Agriculture Organization Report.
Foley, J. K., (2021). Unveiling the Unsustainability: Resource Use in Conventional Agriculture. Journal of Environmental Studies, 45(2), 189-205.
Garcia-Montesinos, J., (2023). Pest Management Revolution: Precision Agriculture in Action. Journal of Pest Ecology, 78(1), 45-62.
Garcia-Montesinos, J., (2023). Successful Adoption of Precision Agriculture in Developing Regions: Challenges and Solutions. Development Studies Journal, 32(1), 78-95.
Gupta, P., & Singh, A. (2023). Economic Viability of Precision Agriculture: A Longitudinal Study." Journal of Agricultural Economics, 40(4), 467-482.
Gupta, P., & Singh, A. (2023). Socio-Economic Implications of Transitioning to Precision Agriculture: A Case Study in South Asia. Agricultural Economics, 42(3), 415-430.
Hernandez, M., & Kim, S. (2024). Adoption Patterns and Success Factors in Precision Agriculture: Insights from Developing Regions. Technology Adoption Studies, 28(2), 201-218.
Hernandez, M., & Kim, S. (2024). Challenges and Opportunities in Precision Agriculture Adoption: Insights from Small-Scale Farmers in Southeast Asia. Agricultural Systems, 58(3), 301-318.
Intergovernmental Panel on Climate Change (IPCC). (2019). Climate Change and Food Security: An Urgent Call for Adaptive Agriculture." IPCC Report,
Jones, S. M., & Patel, R. (2022). Socio-Economic Implications of Precision Agriculture Adoption: A Gender-Based Analysis. Journal of Agricultural Economics, 40(2), 215-230.
Li, J., et al. (2021). Impact of Precision Agriculture on Agricultural Productivity: A Meta-Analysis. Agricultural Economics Review, 68(4), 589-605.
Li, X., (2021). Optimizing Resource Use Through Precision Agriculture: A Case Study in Water Conservation. Journal of Agricultural Water Management, 56(3), 301-318.
Martinez, N., (2025). Policy Interventions for Bridging the Technological Gap in Precision Agriculture: Lessons from Developed Countries. Journal of Agricultural Policy, 48(2), 201-218.
Martinez, N., (2025). Technological Barriers in Precision Agriculture: A Survey of Farmers' Perspectives. Technology in Agriculture Journal, 34(1), 120-136.
Rodriguez, M. A., (2023). Optimizing Irrigation Strategies Through Precision Agriculture: A Case Study in Water-Scarce Regions. Water Resources Research, 38(4), 567-582.
Smith, H. R., (2022). Biodiversity Loss in Agriculture: The Ecological Toll of Intensification. Journal of Ecological Studies, 75(2), 189-205.
Vermeulen, R., (2021). Climate Change Adaptation Strategies in Agriculture: A Synthesis of Global Practices. Climatic Change, 35(2), 201-218.
Vermeulen, R., (2021). Climate Change and Agricultural Productivity: A Global Perspective. Environmental Research Letters, 25(2), 245-260.
Wang, Q., (2020). Precision Agriculture Technologies: A Paradigm Shift in Crop Management. Agricultural Technology Journal, 30(4), 567-583.
Wei, Y., (2022). Economic Losses in Agriculture Due to Climate Variability: A Meta-Analysis. Journal of Environmental Economics and Management, 45(3), 321-337.