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This open access book describes the serious threat of invasive species to native ecosystems. Invasive species have caused and will continue to cause enormous ecological and economic damage with ever increasing world trade. This multi-disciplinary book, written by over 100 national experts, presents the latest research on a wide range of natural science and social science fields that explore the ecology, impacts, and practical tools for management of invasive species. It covers species of all taxonomic groups from insects and pathogens, to plants, vertebrates, and aquatic organisms that impact a diversity of habitats in forests, rangelands and grasslands of the United States. It is well-illustrated, provides summaries of the most important invasive species and issues impacting all regions of the country, and includes a comprehensive primary reference list for each topic. This scientific synthesis provides the cultural, economic, scientific and social context for addressing environmental challenges posed by invasive species and will be a valuable resource for scholars, policy makers, natural resource managers and practitioners.
"The RAWS network and RAWS data-use systems are closely reviewed and summarized in this report. RAWS is an active program created by the many land-management agencies that share a common need for accurate and timely weather data from remote locations for vital operational and program decisions specific to wildland and prescribed fires. A RAWS measures basic observable weather parameters such as temperature, relative humidity, wind speed, wind direction, and precipitation as well as "fuel stick" temperature. Data from almost 1,900 stations deployed across the conterminous United States, Alaska, and Hawaii are now routinely used to calculate and forecast daily fire danger indices, components, and adjective ratings. Fire business applications include the National Fire Danger Rating System (NFDRS), fire behavior, and fire use. Findings point to the fact that although the RAWS program works and provides needed weather data in support of fire operations, there are inefficiencies and significant problem areas that require leadership attention at the National level."
Robert J. Cabin uses the restoration of tropical dry forestland in Hawaii as an in-depth case study to investigate the scientific, practical, and philosophical issues associated with performing ecological restoration in the messy real world. Interweaving entertaining narratives of his own on-the-ground experiences as a practicing restorationist with reflections about his scientific training and background, Cabin explores the relationship between science and practice in ecological restoration. He observes that because restoration can be complex and value-driven, its implementation often turns out to be as much interdisciplinary art as hard science. Despite the often distinct cultures and methodologies of scientists and practitioners, Cabin shows how each has a vital role in effective restoration and offers suggestions for improving working relationships. One approach he advocates is what he calls "intelligent tinkering," after the work of Aldo Leopold. In this model, practitioners employ the same kind of careful but informal trial-and-error strategy followed by such groups as indigenous peoples and hobbyist mechanics. Cabin illustrates the power of intelligent tinkering using examples from his own work and other restoration projects. The gap between science and practice is not unique to ecological restoration; it is a widespread problem across all fields of applied science. Written in a clear and engaging style, Intelligent Tinkering offers an insightful look at the underlying causes of the problem, along with invaluable suggestions for addressing it.