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Technical and Military Imperatives: A Radar History of World War II is a coherent account of the history of radar in the second World War. Although many books have been written on the early days of radar and its role in the war, this book is by far the most comprehensive, covering ground, air, and sea operations in all theatres of World War II. The author manages to synthesize a vast amount of material in a highly readable, informative, and enjoyable way. Of special interest is extensive new material about the development and use of radar by Germany, Japan, Russia, and Great British. The story is told without undue technical complexity, so that the book is accessible to specialists and nonspecialists alike.
Technical and Military Imperatives: A Radar History of World War II is a coherent account of the history of radar in the second World War. Although many books have been written on the early days of radar and its role in the war, this book is by far the most comprehensive, covering ground, air, and sea operations in all theatres of World War II. The author manages to synthesize a vast amount of material in a highly readable, informative, and enjoyable way. Of special interest is extensive new material about the development and use of radar by Germany, Japan, Russia, and Great British. The story is told without undue technical complexity, so that the book is accessible to specialists and nonspecialists alike.
From Simon & Schuster, The Invention That Changed the World explores how a small group of radar pioneers won the second World War and launched a technical revolution. The technology that was created to win World War II—radar—has revolutionized the modern world. This is the fascinating story of the inventors and their inventions.
In 1940 a team of British Scientists arrived in Washington, bearing Britain s most closely guarded technological secrets, including the cavity magnetron, a revolutionary new source of microwave energy. Its arrival triggered the most dramatic mobilisation of science in history, as America s to scientists enlisted to convert the invention into a potent military weapon. Microwave radars eventually helped destroy Japanese warships, Nazi buzz bombs and enabled Allied bombers to see e through cloud cover After the war the work of radar veterans continues to affect our lives by controlling air traffic, helping to forecast the weather and providing physicians with powerful diagnostic tools. Brimming with telling anecdotes and surprising revelations, this book brings to life the exciting, largely untold story of the scientist who not only created a winning weapon but also changed our world for ever.
Radar was the outcome of research during the mid- and late-1930s by scientists and engineers in eight countries: United States, Great Britain, Germany, Holland, France, Italy, USSR, and Japan. Each country believed that this was its own development and held the technology in highest secrecy. Great Britain gave the basics to four advanced Commonwealth nations: Australia, Canada, New Zealand, and South Africa, and indigenous systems emerged in each before WWII. Hungary independently developed its own system during the war. This book provides an account of the developments, including timelines, in each of the 13 countries. It is primarily intended for readers with a general interest in the history of technology. It is neither "academic" (there are no footnotes) nor technically detailed (only one equation and no diagrams). However, about 450 individuals are noted, many with brief bios. In reviewing draft material, the late historian Louis Brown, author of A Radar History of World War II, commented that it was "free of the great radar myths that still fill many accounts: 'Before Rad Lab there was nothing.' 'We invented it in Britain and everyone copied it from us.' 'German radar was second rate and the Japanese did not have any.' "
This study narrates the origin of radar at the Naval Research Laboratory. Radar should be seen as the product not simply of one man or even a group of men but rather as the result of individuals working within the structure of a mission-oriented research-and-development facility. To comprehend how radar was developed, when it was developed, and why, one must follow not just the evolution of technical progress but also the administrative and political decisions that shaped it. One must understand how the talents and motivations of the people who created this new device were related to the particular institutional situation and historical context in which they labored. The account is the story of a modern research-and-development laboratory in action. It discusses one major accomplishment of one institution. But it is also written to contribute to a broader understanding of the history of research and development laboratories in general and of the influence they have had on the course of modern American history. The work of the Naval Research Laboratory on radar is a significant episode in that story.
Since the publication of the second edition of "Introduction to Radar Systems," there has been continual development of new radar capabilities and continual improvements to the technology and practice of radar. This growth has necessitated the addition and updating of the following topics for the third edition: digital technology, automatic detection and tracking, doppler technology, airborne radar, and target recognition. The topic coverage is one of the great strengths of the text. In addition to a thorough revision of topics, and deletion of obsolete material, the author has added end-of-chapter problems to enhance the "teachability" of this classic book in the classroom, as well as for self-study for practicing engineers.