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A history of Argonne National Laboratory as the site of research in nuclear reactor technology, biology and medicine, materials science and world-renowned programs in physics.
Alvin C. York (1887--1964) -- devout Christian, conscientious objector, and reluctant hero of World War I -- is one of America's most famous and celebrated soldiers. Known to generations through Gary Cooper's Academy Award-winning portrayal in the 1941 film Sergeant York, York is credited with the capture of 132 German soldiers on October 8, 1918, in the Meuse-Argonne region of France -- a deed for which he was awarded the Congressional Medal of Honor. At war's end, the media glorified York's bravery but some members of the German military and a soldier from his own unit cast aspersions on his wartime heroics. Historians continue to debate whether York has received more recognition than he deserves. A fierce disagreement about the location of the battle in the Argonne forest has further complicated the soldier's legacy. In Alvin York, Douglas V. Mastriano sorts fact from myth in the first full-length biography of York in decades. He meticulously examines York's youth in the hills of east Tennessee, his service in the Great War, and his return to a quiet civilian life dedicated to charity. By reviewing artifacts recovered from the battlefield using military terrain analysis, forensic study, and research in both German and American archives, Mastriano reconstructs the events of October 8 and corroborates the recorded accounts. On the eve of the WWI centennial, Alvin York promises to be a major contribution to twentieth-century military history.
All the science in Breaking Bad—from explosive experiments to acid-based evidence destruction—explained and analyzed for authenticity. Breaking Bad's (anti)hero Walter White (played by Emmy-winner Bryan Cranston) is a scientist, a high school chemistry teacher who displays a plaque that recognizes his “contributions to research awarded the Nobel Prize.” During the course of five seasons, Walt practices a lot of ad hoc chemistry—from experiments that explode to acid-based evidence destruction to an amazing repertoire of methodologies for illicit meth making. But how much of Walt's science is actually scientific? In The Science of “Breaking Bad,” Dave Trumbore and Donna Nelson explain, analyze, and evaluate the show's portrayal of science, from the pilot's opening credits to the final moments of the series finale. The intent is not, of course, to provide a how-to manual for wannabe meth moguls but to decode the show's most head-turning, jaw-dropping moments. Trumbore, a science and entertainment writer, and Nelson, a professor of chemistry and Breaking Bad's science advisor, are the perfect scientific tour guides. Trumbore and Nelson cover the show's portrayal of chemistry, biology, physics, and subdivisions of each area including toxicology and electromagnetism. They explain, among other things, Walt's DIY battery making; the dangers of Mylar balloons; the feasibility of using hydrofluoric acid to dissolve bodies; and the chemistry of methamphetamine itself. Nelson adds interesting behind-the-scenes anecdotes and describes her work with the show's creator and writers. Marius Stan, who played Bogdan on the show (and who is a PhD scientist himself) contributes a foreword. This is a book for every science buff who appreciated the show's scientific moments and every diehard Breaking Bad fan who wondered just how smart Walt really was.
Downscaling is a widely used technique for translating information from large-scale climate models to the spatial and temporal scales needed to assess local and regional climate impacts, vulnerability, risk and resilience. This book is a comprehensive guide to the downscaling techniques used for climate data. A general introduction of the science of climate modeling is followed by a discussion of techniques, models and methodologies used for producing downscaled projections, and the advantages, disadvantages and uncertainties of each. The book provides detailed information on dynamic and statistical downscaling techniques in non-technical language, as well as recommendations for selecting suitable downscaled datasets for different applications. The use of downscaled climate data in national and international assessments is also discussed using global examples. This is a practical guide for graduate students and researchers working on climate impacts and adaptation, as well as for policy makers and practitioners interested in climate risk and resilience.
In this unique history of the “Lost Battalion” of World War I, Alan D. Gaff tells for the first time the story of the 77th Division from the perspective of the soldiers in the ranks. On October 2, 1918, Maj. Charles W. Whittlesey led the 77th Division in a successful attack on German defenses in the Argonne Forest of northeastern France. His unit, comprised of men of a wide mix of ethnic backgrounds from New York City and the western states, was not a battalion nor was it ever “lost,” but once a newspaper editor applied the term “lost battalion” to the episode, it stuck. Gaff draws from new, unimpeachable sources—such as sworn testimony by soldiers who survived the ordeal—to correct the myths and legends and to reveal what really happened in the Argonne Forest during early October 1918.
Advances in Nanotechnology Research and Application: 2013 Edition is a ScholarlyEditions™ book that delivers timely, authoritative, and comprehensive information about Atomic Layer Deposition. The editors have built Advances in Nanotechnology Research and Application: 2013 Edition on the vast information databases of ScholarlyNews.™ You can expect the information about Atomic Layer Deposition in this book to be deeper than what you can access anywhere else, as well as consistently reliable, authoritative, informed, and relevant. The content of Advances in Nanotechnology Research and Application: 2013 Edition has been produced by the world’s leading scientists, engineers, analysts, research institutions, and companies. All of the content is from peer-reviewed sources, and all of it is written, assembled, and edited by the editors at ScholarlyEditions™ and available exclusively from us. You now have a source you can cite with authority, confidence, and credibility. More information is available at http://www.ScholarlyEditions.com/.