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For nearly a century, scientific advances have fueled progress in U.S. agriculture to enable American producers to deliver safe and abundant food domestically and provide a trade surplus in bulk and high-value agricultural commodities and foods. Today, the U.S. food and agricultural enterprise faces formidable challenges that will test its long-term sustainability, competitiveness, and resilience. On its current path, future productivity in the U.S. agricultural system is likely to come with trade-offs. The success of agriculture is tied to natural systems, and these systems are showing signs of stress, even more so with the change in climate. More than a third of the food produced is unconsumed, an unacceptable loss of food and nutrients at a time of heightened global food demand. Increased food animal production to meet greater demand will generate more greenhouse gas emissions and excess animal waste. The U.S. food supply is generally secure, but is not immune to the costly and deadly shocks of continuing outbreaks of food-borne illness or to the constant threat of pests and pathogens to crops, livestock, and poultry. U.S. farmers and producers are at the front lines and will need more tools to manage the pressures they face. Science Breakthroughs to Advance Food and Agricultural Research by 2030 identifies innovative, emerging scientific advances for making the U.S. food and agricultural system more efficient, resilient, and sustainable. This report explores the availability of relatively new scientific developments across all disciplines that could accelerate progress toward these goals. It identifies the most promising scientific breakthroughs that could have the greatest positive impact on food and agriculture, and that are possible to achieve in the next decade (by 2030).
This book presents cases from different countries with a main focus on the perspectives of using precision farming in Europe. Divided into 12 chapters it addresses some of the most recent developments and aspects of precision farming. The intention of this book is to provide an overview of some of the most promising technologies with precision agriculture from an economic point of view. Each chapter has been put together so that it can be read individually should the reader wish to focus on one particular topic. Precision Farming as a farm technology benefits from large-scale advantages due to relatively high investment costs and is primarily adopted on farms with medium to large field areas.
Describes the technology used by ancient farmers, covering the evolution of farming tools, irrigation methods, animal breeding, and the processing of crops, including the ancient civilizations of China, Greece, Rome, India, and the Middle East.
Study of Ranchi District, Bihar.
With climate change and other factors looming, the technology farmers and agricultural workers employ to harvest crops and raise livestock is ever more important to ensuring the world's food supply can sustain us. This informative volume explores the various cutting-edge technologies and techniques deployed in the twenty-first century, and how workers must adapt to working with them. Vivid imagery and well-informed predictions about where agricultural tech goes from here make this a vital resource for young people thinking about agriculture as a livelihood, and casual readers alike.
Presenting a history of agriculture in the American Corn Belt, this book argues that modernization occurred not only for economic reasons but also because of how farmers use technology as a part of their identity and culture. Histories of agriculture often fail to give agency to farmers in bringing about change and ignore how people embed technology with social meaning. This book, however, shows how farmers use technology to express their identities in unspoken ways and provides a framework for bridging the current rural-urban divide by presenting a fresh perspective on rural cultural practices. Focusing on German and Jeffersonian farmers in the 18th century and Corn Belt producers in the 1920s, the Cold War, and the recent period of globalization, this book traces how farmers formed their own versions of rural modernity. Rural people use technology to contest urban modernity and debunk yokel stereotypes and women specifically employed technology to resist urban gender conceptions. This book shows how this performance of rural identity through technological use impacts a variety of current policy issues and business interests surrounding contemporary agriculture from the controversy over genetically modified organisms and hog confinement facilities to the growth of wind energy and precision technologies. Inspired by the author's own experience on his family’s farm, this book provides a novel and important approach to understanding how farmers’ culture has changed over time, and why machinery is such a potent part of their identity. This book will be of great interest to students and scholars of agricultural history, technology and policy, rural studies, the history of science and technology, and the history of farming culture in the USA.
Study based on data collected from selected farmers in Varanasi District, Uttar Pradesh, for the agricultural year 1971-72.
This book constitutes Part I of the refereed four-volume post-conference proceedings of the 4th IFIP TC 12 International Conference on Computer and Computing Technologies in Agriculture, CCTA 2010, held in Nanchang, China, in October 2010. The 352 revised papers presented were carefully selected from numerous submissions. They cover a wide range of interesting theories and applications of information technology in agriculture, including simulation models and decision-support systems for agricultural production, agricultural product quality testing, traceability and e-commerce technology, the application of information and communication technology in agriculture, and universal information service technology and service systems development in rural areas.