This “incredibly engaging and deeply personal” story of World War II pilot Joe Singleton “draws the reader into the dangerous world of night fighting” (Manhattan Book Review). Joe Singleton was an unlikely hero. A junior manager at a paints and varnish company at the outbreak of war, he was surprised to discover he had a hidden talent for flying. Despite RAF Fighter Squadrons crying out for replacements after the carnage of the Battle of Britain, Joe was posted to the rapidly developing world of night fighting. He flew first Defiants, then Beaufighters, finding himself in the thick of the very earliest stages of ground-controlled interception and airborne radar engagements. His skills finally began to bear fruit when piloting a Mosquito, and he took part in several successful missions. But the pinnacle came on the night of March 19, 1944: scrambling to intercept a big German raid on Hull, he located and shot down a Junkers 188, then went on to shoot down two more, all in the space of thirteen dramatic minutes. He and his navigator survived the crash-landing that ensued, and he went on to be feted as a national hero. Three in Thirteen is a unique sortie-by-sortie account of his journey from bewildered recruit to celebrated expert, illustrated with extracts from Joe’s RAF logbook and unpublished photographs and illustrations. Roger Dunsford’s extensive experience as an RAF pilot brings a vivid immediacy to Joe’s experiences, combined with astute analysis of the planes, the tactics, and the events of that fateful night. “Inspirational and thoroughly engaging—a true hero’s story.” —Books Monthly
Metal-Catalyzed Oxidations of Organic Compounds: Mechanistic Principles and Synthetic focuses on the oxidative transformations of functional groups. This book explores oxidation as being extensively used in the laboratory synthesis of fine organic chemicals and in the manufacture of large-volume petrochemicals. Organized into two parts encompassing 13 chapters, this book starts with an overview of the mechanistic principles of oxidation–reduction in biochemical, organic, and inorganic systems. This text then proceeds with a discussion of the use of molecular oxygen, hydrogen peroxide, and alkyl hydroperoxides as primary oxidants. Other chapters explore stoichiometric oxidations with metal oxidants, which include permanganate and chromic acid. This book discusses as well the synthetic applications of catalytic oxidations as well as the technology of petrochemical oxidation. The final chapter deals with the autoxidations of sulfur, phosphorus, and nitrogen compounds. This book is intended for chemists involved in organic synthesis, catalysis, and organometallic chemistry, both in academic institutions and in industrial laboratories.
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