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The Quintessence of Irving Langmuir is a biography on the life of Irving Langmuir. The book was created to complement the volume entitled "The Collected Works of Irving Langmuir. This selection was created to introduce the person and his works. Special attention has been given to Langmuir's early life and family background. The text begins with an account of the person's child seen from the mother's perspective. Such an account was taken from the family's documents. These documents are in the form of letters, diaries, photograph albums, newspaper clippings, and genealogical studies. A brief history about the formation of General Electric Company is also covered. A great part of the book relates the life of Langmuir as a father and as a scientist. Among his inventions is using dry ice for cloud seeding. One of his greatest achievements is receiving a Nobel Prize in Chemistry. The book is directed to the general public.
The Collected Works of Irving Langmuir: Volume 12, Langmuir, the Man and the Scientist presents the biography of Irving Langmuir, General Electric's foremost research scientist, which also includes a chronological summary of his contributions to science. Irving Langmuir, born on January 31, 1881 in New York, attends Public School No. 11 when he is seven. When he reaches 15, he attends Chestnut Hill Academy in Philadelphia. His eye troubles become worse making him wear glasses; later in life, he has cataracts removed from both eyes. He graduates with a Bachelor of Science degree in metallurgical engineering from Columbia University in 1903. In 1906, Langmuir earns his Ph.D., degree from Gottingen. He accepts an instructor position in Chemistry at Stevens Institute of Technology, New Jersey, until 1909 when joins the General Electric Company. In the next years, he receives numerous awards such as the Nichols Medal, Cannizaro Prize, Willar Gibbs Medal. In 1912, he marries Marion Mersereau. He receives the Nobel Prize for Chemistry in 1932. Among his contributions to science are an improved tungsten filament design used in incandescent bulbs, an atomic hydrogen welding torch, and theories of atomic structure and chemical bond formations. He dies of a heart attack in 1957 at the age of 76. Students, and academicians involved in history, general readers, and scientists interested in the lives of great men in science will find this book pleasant reading.
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