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Science/ Agriculture reference authorized for use in secondary schools in Saskatchewan, 1925-1932 (Saskatchewan Dept. of Education Circulars: Regulations and recommendations governing programmes and courses of study for secondary schools 1926-1931, etc.).
This new volume explores a wide variety of topics in modern agriculture. From the use of big data and new technologies for monitoring water levels and weather, to the use of biotechnology in seed production and new non-chemical ways to control pests and weeds, this volume provides students and researchers with new and interesting ways to look at agricultural production in modern society. Will our farmers be able to produce enough food to support the growing population? What is the future of our water supply and our soil health? How will climate change affect agricultural production? How do sustainable practices affect prices and growth rates?
The authors define sustainable agriculture as "the umbrella term for approaches to agriculture that are environmentally friendly, profitable, and fair to farmers and ranchers." One of Horne's positive solutions to agribusiness-as-usual is to pay farmers to implement sustainable practice, rather than pay them later to clean up pollution or compensate for overproduction. Horne's eight goals of sustainability are healthy soil, increasing water conservation and quality, managing organic waste without pollution, safer pest management, adopting livestock and crops more adapted to nature, increased biodiversity, energy conservation, increased profitability, and reduced risk. Horne hopes to convert farmers to sustainable agriculture with folksy lines like: "I feel like I'm carrying on in the pioneer spirit of Oklahoma-- breaking new ground, looking for a better life. What keeps me going is the knowledge that the good earth will sustain us if we treat her right." Horne is president of the Kerr Center for Sustainable Agriculture in Oklahoma. Annotation copyrighted by Book News Inc., Portland, OR
Science/ Agriculture reference authorized for use in secondary schools in Saskatchewan, 1925-1932 (Saskatchewan Dept. of Education Circulars: Regulations and recommendations governing programmes and courses of study for secondary schools 1926-1931, etc.).
Farming for Our Future examines the policies and legal reforms necessary to accelerate the adoption of practices that can make agriculture in the United States climate-neutral or better. These proven practices will also make our food system more resilient to the impacts of climate change. Agriculture's contribution to climate change is substantial--much more so than official figures suggest--and we will not be able to achieve our overall mitigation goals unless agricultural emissions sharply decline. Fortunately, farms and ranches can be a major part of the climate solution, while protecting biodiversity, strengthening rural communities, and improving the lives of the workers who cultivate our crops and rear our animals. The importance of agricultural climate solutions can not be underestimated; it is a critical element both in ensuring our food security and limiting climate change. This book provides essential solutions to address the greatest crises of our time.
With the growing popularity and availability of precision equipment, farmers and producers have access to more data than ever before. With proper implementation, precision agriculture management can improve profitability and sustainability of production. Precision Agriculture Basics is geared at students, crop consultants, farmers, extension workers, and practitioners that are interested in practical applications of site-specific agricultural management. Using a multidisciplinary approach, readers are taught to make data-driven on-farm decisions using the most current knowledge and tools in crop science, agricultural engineering, and geostatistics. Precision Agriculture Basics also features a stunning video glossary including interviews with agronomists on the job and in the field.
This book provides a review of precision agriculture technology development, followed by a presentation of the state-of-the-art and future requirements of precision agriculture technology. It presents different styles of precision agriculture technologies suitable for large scale mechanized farming; highly automated community-based mechanized production; and fully mechanized farming practices commonly seen in emerging economic regions. The book emphasizes the introduction of core technical features of sensing, data processing and interpretation technologies, crop modeling and production control theory, intelligent machinery and field robots for precision agriculture production.
A engaging analysis of food production in the United States emphasizing that sustainable agricultural development is important to community health.
AN ESSENTIAL GUIDE TO NEW ZEALAND'S DYNAMIC AGRICULTURAL AND HORTICULTURAL INDUSTRY Written by experts from Massey University's School of Agriculture and Environment, this is an accessible and straightforward overview of the business of growing plants for human and animal consumption, as well as forestry and flower production. It has a focus on New Zealand practices, and information on social issues, environmental costs, food safety, chemical use, post-harvest management and availability. Chapters cover pasture and forages, field crops and vegetables, kiwifruit, grapes, pip fruit and summer fruit. There are also useful chapters on soils and precision agriculture, and how new technologies are improving productivity and sustainability. The book is aimed at high school students studying agriculture, and year one tertiary students undertaking degrees or diplomas in this subject. Those studying agribusiness, resource management, nutrition, food technology and ecology will also find it helpful. SALES POINTS * Overview of the growing agricultural and horticultural industries in New Zealand written by experts * Specific content on local practices not available in other publications, as well as information on social issues, environmental costs, food safety, chemical use, post-harvest management and availability * Valuable guide for agricultural science students at all levels, lifestyle block owners, farmers and media * In the same series as the highly regarded.
A single seed is more than just the promise of a plant. In rural south India, seeds represent diverging paths toward a sustainable livelihood. Development programs and global agribusiness promote genetically modified seeds and organic certification as a path toward more sustainable cotton production, but these solutions mask a complex web of economic, social, political, and ecological issues that may have consequences as dire as death. In Cultivating Knowledge anthropologist Andrew Flachs shows how rural farmers come to plant genetically modified or certified organic cotton, sometimes during moments of agrarian crisis. Interweaving ethnographic detail, discussions of ecological knowledge, and deep history, Flachs uncovers the unintended consequences of new technologies, which offer great benefits to some—but at others’ expense. Flachs shows that farmers do not make simple cost-benefit analyses when evaluating new technologies and options. Their evaluation of development is a complex and shifting calculation of social meaning, performance, economics, and personal aspiration. Only by understanding this complicated nexus can we begin to understand sustainable agriculture. By comparing the experiences of farmers engaged with these mutually exclusive visions for the future of agriculture, Cultivating Knowledge investigates the human responses to global agrarian change. It illuminates the local impact of global changes: the slow, persistent dangers of pesticides, inequalities in rural life, the aspirations of people who grow fibers sent around the world, the place of ecological knowledge in modern agriculture, and even the complex threat of suicide. It all begins with a seed.