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Congress has continued to debate the efficacy and constitutionality of federal regulation of firearms and ammunition, with strong advocates arguing for and against greater gun control. While several dozen gun control-related proposals have been introduced in recent Congresses, only a handful of those bills received significant legislative action. The 109th Congress, for example, passed two bills with firearmsrelated provisions that were enacted into law. P.L. 109-72 prohibits certain types of lawsuits against firearm manufacturers and dealers to recover damages related to the criminal or unlawful use of their products by other persons, and P.L. 109-295 includes a provision that prohibits federal officials from seizing any firearm from private persons during a major disaster or emergency, if possession of that firearm was not already prohibited under federal or state law. Nevertheless, the 110th Congress could possibly reconsider several gun control proposals that were considered as part of appropriations and crime legislation in the previous Congress. During the 109th Congress, the House amended the Children's Safety Act of 2005 (H.R. 3132) to prohibit the transfer or possession of a firearm to or by any person convicted of a sex offense against a minor. The House also amended Secure Access to Justice and Court Protection Act of 2005 (H.R. 1751) to authorize certain federal court judges and officials to carry firearms for personal protection. The Senate passed a different version of H.R. 1751 that included similar provisions, as well as provisions designed to clarify and expand the Law Enforcement Officers Safety Act (P.L. 108-277) -- a law that gives concealed carry privileges to qualified on-duty and retired law enforcement officers. None of those provisions were enacted into law, however. In addition, the House Judiciary considered four gun-related bills: the ATFE Modernization and Reform Act of 2006 (H.R. 5092), the Firearms Corrections and Improvement Act (H.R. 5005), the Firearm Commerce Modernization Act (H.R. 1384), and the NICS Improvement Act of 2005 (H.R. 1415). H.R. 5092 was passed by the House. The 109th Congress, moreover, maintained a fee prohibition for Brady background checks and other funding limitations and conditions related to gun enforcement in the FY2006 DOJ appropriations (P.L. 109-108). Those limitations and conditions have been continued into FY2007 under continuing resolutions. They are often referred to as the "Tiahrt amendment," for their sponsor in the FY2004 appropriations cycle, Representative Todd Tiahrt. Issues addressed in those bills, as well as the Tiahrt funding limitations and conditions, could be reconsidered in the 110th Congress. Senator Charles Schumer, for example, has introduced a bill (S. 77) that would repeal portions of the Tiahrt amendment that limit the sharing of firearm trace data. Other gun control-related issues that may reemerge in the 110th Congress include (1) retaining Brady background check records for approved transactions to enhance terrorist screening, (2) more strictly regulating certain long-range fifty caliber rifles, (3) further regulating certain firearms previously defined in statute as "assault weapons," and (4) requiring background checks for firearm transfers at gun shows. This report will updated to reflect legislative action.
Land use and land cover (LULC) as well as its changes (LUCC) are an interplay between bio-geophysical characteristics of the landscape and climate as well as the complex human interaction including its different patterns of utilization superimposed on the natural vegetation. LULC is a core information layer for a variety of scientific and administrative tasks(e.g. hydrological modelling, climate models, land use planning).In particular in the context of climate change with its impacts on socio-economic, socio-ecologic systems as well as ecosystem services precise information on LULC and LUCC are mandatory baseline datasets required over large areas. Remote sensing can provide such information on different levels of detail and in a homogeneous and reliable way. Hence, LULC mapping can be regarded as a prototype for integrated approaches based on spaceborne and airborne remote sensing techniques combined with field observations. The book provides for the first time a comprehensive view of various LULC activities focusing on European initiatives, such as the LUCAS surveys, the CORINE land covers, the ESA/EU GMES program and its resulting Fast-Track- and Downstream Services, the EU JRC Global Land Cover, the ESA GlobCover project as well as the ESA initiative on Essential Climate Variables. All have and are producing highly appreciated land cover products. The book will cover the operational approaches, but also review current state-of-the-art scientific methodologies and recommendations for this field. It opens the view with best-practice examples that lead to a view that exceeds pure mapping, but to investigate into drivers and causes as well as future projections.
Remote sensing stands as the defining technology in our ability to monitor coral reefs, as well as their biophysical properties and associated processes, at regional to global scales. With overwhelming evidence that much of Earth’s reefs are in decline, our need for large-scale, repeatable assessments of reefs has never been so great. Fortunately, the last two decades have seen a rapid expansion in the ability for remote sensing to map and monitor the coral reef ecosystem, its overlying water column, and surrounding environment. Remote sensing is now a fundamental tool for the mapping, monitoring and management of coral reef ecosystems. Remote sensing offers repeatable, quantitative assessments of habitat and environmental characteristics over spatially extensive areas. As the multi-disciplinary field of coral reef remote sensing continues to mature, results demonstrate that the techniques and capabilities continue to improve. New developments allow reef assessments and mapping to be performed with higher accuracy, across greater spatial areas, and with greater temporal frequency. The increased level of information that remote sensing now makes available also allows more complex scientific questions to be addressed. As defined for this book, remote sensing includes the vast array of geospatial data collected from land, water, ship, airborne and satellite platforms. The book is organized by technology, including: visible and infrared sensing using photographic, multispectral and hyperspectral instruments; active sensing using light detection and ranging (LiDAR); acoustic sensing using ship, autonomous underwater vehicle (AUV) and in-water platforms; and thermal and radar instruments. Emphasis and Audience This book serves multiple roles. It offers an overview of the current state-of-the-art technologies for reef mapping, provides detailed technical information for coral reef remote sensing specialists, imparts insight on the scientific questions that can be tackled using this technology, and also includes a foundation for those new to reef remote sensing. The individual sections of the book include introductory overviews of four main types of remotely sensed data used to study coral reefs, followed by specific examples demonstrating practical applications of the different technologies being discussed. Guidelines for selecting the most appropriate sensor for particular applications are provided, including an overview of how to utilize remote sensing data as an effective tool in science and management. The text is richly illustrated with examples of each sensing technology applied to a range of scientific, monitoring and management questions in reefs around the world. As such, the book is broadly accessible to a general audience, as well as students, managers, remote sensing specialists and anyone else working with coral reef ecosystems.
"This sourcebook is intended to assist environmental managers and others who work with indicators in pursuing appropriate methods for indicator testing and production, and to offer some guidance to those responsible for the interpretation of indicators and implementation of decisions based on them. Upon reading this document, technical advisers, environmental policy makers, and remote sensing lab directors and project managers should be able to identify specific, relevant uses of remote sensing data for biodiversity monitoring and indicator development related to the CBD." --p. 8.