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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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Suggested Citation:"References." National Research Council. 1997. Precision Agriculture in the 21st Century: Geospatial and Information Technologies in Crop Management. Washington, DC: The National Academies Press. doi: 10.17226/5491.
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122 REFERENCES Christensen, S., T. Heisel, and A. M. Walter. 1996. Patch spraying in cereals. Proceedings of the Second International Weed Control Congress, Copenhagen, Denmark. Clemons, E. 1986. Information systems for sustained competitive advantage. Info. Man- age. 11:131-136. Colburn, J. 1991. Soil Chemical Sensor and Precision Agricultural Chemical Delivery System and Method. U.S. Patent 5,033,397. Colburn, J. 1997. Soil Constitutent Sensor and Precision Agrichemical Delivery System and Method, U.S. Patent, Notice of Allowance. Colwell, R. N. 1956. Determining the prevalence of certain cereal crop diseases by means of aerial photography. Hilgardia 26:223-286. Cook, S. E., R. J. Corner, G. Mussel, G. Reithmuller, and M. D. Maitland. 1996. Precision agriculture and risk analysis: An Australian example. Pp. 1123-1132 in Precision Ag- riculture: Proceedings of the Third International Conference on Precision Agriculture, P. C. Robert, R. H. Rust, and W. E. Larson, eds. Madison, Wis.: American Society of America, Crop Science Society of America, and Soil Science Society of America. David, P. A. 1975. Technical choice, innovation, and economic growth. Essays on Ameri- can and British experience in the nineteenth century. London: Cambridge University Press. Dinar, A., and D. Yaron. 1990. Influence of quality and scarcity of inputs on the adoption of modern irrigation technologies. West. J. Agric. Econ. 15:224-233. Dinar, A., M. B. Campbell, and D. Zilberman. 1992. Adoption of improved irrigation and drainage reduction technologies under limiting environmental conditions. Environ. Resour. Econ. 2:373-398. Dixit, A. K., and R. S. Pindyck. 1993. Investment Under Uncertainty. Princeton, N.J.: Princeton University Press. Doolittle, J. A., K. A. Sudduth, N. R. Kitchen, and S. J. Indorante. 1994. Estimating depths to claypans using electromagnetic induction techniques. J. Soil Water Conserv. 49:572- 575. Easton, D. 1996. Corn population and plant spacing variability: The next mapping layer. Pp. 723-728 in Precision Agriculture: Proceedings of the Third International Confer- ence on Precision Agriculture, P. C. Robert, R. H. Rust, and W. E. Larson, eds. Madi- son, Wis.: American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America. Eching, S., and D. Moellenberndt. In press. CIMIS—Ten years of growth and a promising future. State of California, The Resource Agency. Department of Water Resources, Sacramento. Eching, S., D. Moellenberndt, and L. Brainard. 1995. CIMIS Agricultural Resources Book. State of California, The Resource Agency. Department of Water Resources, Sacra- mento, Calif. Economic Research Service. 1995a. Agricultural Resources and Environmental Indicators Agricultural Handbook No. 705. U.S. Department of Agriculture, Washington, D.C. Economic Research Service. 1995b. 1994 Pest Management on Major Field Crops. Agri- cultural Resources and Environmental Indicators Updates Number 19. U.S. Depart- ment of Agriculture, Washington, D.C. Economic Research Service. 1996. Farm Business Economics Report 1994. U.S. Depart- ment of Agriculture, Washington, D.C.

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Sensors, satellite photography, and multispectral imaging are associated with futuristic space and communications science. Increasingly, however, they are considered part of the future of agriculture. The use of advanced technologies for crop production is known as precision agriculture, and its rapid emergence means the potential for revolutionary change throughout the agricultural sector.

Precision Agriculture in the 21st Century provides an overview of the specific technologies and practices under the umbrella of precision agriculture, exploring the full implications of their adoption by farmers and agricultural managers. The volume discusses how precision agriculture could dramatically affect decisionmaking in irrigation, crop selection, pest management, environmental issues, and pricing and market conditions. It also examines the geographical dimensions—farm, regional, national—of precision agriculture and looks at how quickly and how widely the agricultural community can be expected to adopt the new information technologies.

Precision Agriculture in the 21st Century highlights both the uncertainties and the exciting possibilities of this emerging approach to farming. This book will be important to anyone concerned about the future of agriculture: policymakers, regulators, scientists, farmers, educators, students, and suppliers to the agricultural industry.

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