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The report presents suggestions for the design of an air traffic control (ATC) incident-reporting system aimed at maximizing the amount of corrective feedback to the ATC system. The approach taken is system-oriented rather than controller-oriented. Included is a discussion of a philosophy of corrective and punitive action relative to controller involvement in an incident. Recommendations and examples of format are included for the design of incident-report forms and incident chronology and of a checklist to be used in periodic appraisal of controller performance. Emphasis is given in format design to use of systems and human function, rather than regulatory and procedural terminology. Implementation and data-analysis techniques are also discussed. (Author).
In 2004, a California computer whiz named Barrett Lyon uncovered the identity of a hacker running major assaults on business websites. Without fully grasping the repercussions, he set on an investigation that led him into the heart of the Russian mob. Cybercrime was evolving. No longer the domain of small-time thieves, it had been discovered by sophisticated gangs. They began by attacking corporate websites but increasingly stole financial data from consumers and defense secrets from governments. While Barrett investigated the cutting edge of technology crime, the U.S. government struggled to catch up. Britain, however, was a different story. In the late 1990s, the Queen herself had declared safe e-commerce a national security priority. Agents from the London-based National Hi-Tech Crime Unit sought out Barrett and enlisted his help. They also sent detective Andrew Crocker, a Welsh former boxer, to Russia to track down and prosecute the hackers—and to find out who they worked for. Fatal System Error penetrates both the Russian cyber-mob and the American mafia as the two fight over the Internet’s massive spoils. It takes readers into the murky hacker underground, traveling the globe from San Francisco to Costa Rica, London, and Russia. Using unprecedented access to mob businesses and Russian officials, it shows how top criminals earned protection from the Russian government—and how Barrett Lyon and Andrew Crocker got closer to the titans of the underground economy than any previous outsider. Together, their stories explain why cybercrime is much worse than you thought—and why the Internet might not survive.
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Business-to-business (B2B) integration is a buzzword which has been used a lot in recent years, with a variety of meanings. Starting with a clear technical definition of this term and its relation to topics like A2A (Application-to-Application), ASP (Application Service Provider), A2A, and B2C (Business-to-Consumer), Christoph Bussler outlines a complete and consistent B2B integration architecture based on a coherent conceptual model. He shows that B2B integration not only requires the exchange of business events between distributed trading partners across networks like the Internet, but also demands back-end application integration within business processes, and thus goes far beyond traditional approaches to enterprise application integration approaches. His detailed presentation describes how B2B integration standards like RosettaNet or SWIFT, the application integration standard J2EE Connector Architecture and basic standards like XML act together in order to enable business process integration. The book is the first of its kind that discusses B2B concepts and architectures independent of specific and short-term industrial or academic approaches and thus provides solid and long-lasting knowledge for researchers, students, and professionals interested in the field of B2B integration.
Recent debate over healthcare and its spiraling costs has brought medical error into the spotlight as an indicator of everything that is ineffective, inhumane, and wasteful about modern medicine. But while the tendency is to blame it all on human error, it is a much more complex problem that involves overburdened systems, constantly changing technology, increasing specialization, and a cycle of continual funding shortfalls made even more acute by resource-wasting inefficiencies. Medical Error and Harm: Understanding, Prevention and Control, presents the work of long time physician and teacher Milos Jenicek, a pioneering expert on epidemiology, evidence-based medicine, and critical thinking and decision making in the health sciences. Providing an extraordinarily comprehensive overview of the subject that is as thorough and scientifically organized as it is accessible and free of rhetoric, Dr. Jenicek — Presents a short history of error in general across various domains of human activity and endeavor, including concepts, methodologies of study, and management applications Provides semantic and taxonomic classifications of challenges in medical error and harm, two distinct domains Explores approaches used to investigate and ameliorate challenges in medicine and other health sciences Explains why, when, and how studies and decisions regarding errors should be carried out, such as whether risk assessment should be undertaken in the diagnosis, treatment, or prognosis stage Covers essential strategies for mitigating errors in the broader framework of medical care, specifically in community medicine and public health Considers the ever-growing role of physicians in tort law and litigation The book also discusses whether dealing with errors is a learned skill and looks at how much of the problem with medical error is caused by the medical community’s failure to teach, learn, and understand everything there is to know about medical error, including the often neglected importance of critical thinking skills. Understanding and correcting this shortfall is a primary responsibility of every health professional, one they can begin to realize with the study of these pages.
Designed for graduate and upper-level undergraduate engineering students, this is an introduction to control systems, their functions, and their current role in engineering design. Organized from a design rather than an analysis viewpoint, it shows students how to carry out practical engineering design on all types of control systems. Covers basic analysis, operating and design techniques as well as hardware/software implementation. Includes case studies.

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