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| {{http://scua.library.umass.edu/images/findingaids/mufs033-i001-001.jpg?350|David R. Inglis, ca.1953}} |
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<html><div style="float:right; padding-left:20px; padding-bottom:15px;"><img src="http://scua.library.umass.edu/images/findingaids/mufs033-i001-001.jpg" alt="David R. Inglis, ca.1953" style="width:220px; border:1px solid #333; padding:5px;" /></div></html>A namesake and descendant of David Rittenhouse, one of early America's preeminent physical scientists, David R. Inglis enjoyed a career in nuclear physics that ranged from theoretical work on the structure of the nucleus in the 1930s to the development of the atomic bomb in the 1940s to the protracted struggle against nuclear weaponry and nuclear power. Born in Detroit, Michigan, on October 10, 1905, Inglis graduated from Amherst College (1928) before receiving his doctorate from the University of Michigan in 1931 for a dissertation on energy relations in complex spectra. | A namesake and descendant of David Rittenhouse, one of early America's preeminent physical scientists, David R. Inglis enjoyed a career in nuclear physics that ranged from theoretical work on the structure of the nucleus in the 1930s to the development of the atomic bomb in the 1940s to the protracted struggle against nuclear weaponry and nuclear power. Born in Detroit, Michigan, on October 10, 1905, Inglis graduated from Amherst College (1928) before receiving his doctorate from the University of Michigan in 1931 for a dissertation on energy relations in complex spectra. |
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Like many ambitious young scientists of his generation, Inglis traveled abroad to strengthen his credentials. Well versed in current issues in the field from having attended the series of symposia on theoretical physics held in Ann Arbor, Inglis spent a year in Heidelberg, immersing himself in the rapidly developing field of quantum mechanics. When he returned to the States in 1933, however, he found himself in a state of academic vagabondage, passing through a succession of faculty positions at Ohio State (where he met and married Dorothy Kerr), Pittsburgh, and Princeton before landing at Johns Hopkins in 1938. There, he devoted himself to developing a program in experimental nuclear physics while conducting significant research on the nature of spin-orbit coupling in 7Li. When later confirmed, this work is believed, as Hanna et al. (1997) report, to represent the first assignment of an excited nuclear level based on a microscopic quantum mechanical theory. | Like many ambitious young scientists of his generation, Inglis traveled abroad to strengthen his credentials. Well versed in current issues in the field from having attended the series of symposia on theoretical physics held in Ann Arbor, Inglis spent a year in Heidelberg, immersing himself in the rapidly developing field of quantum mechanics. When he returned to the States in 1933, however, he found himself in a state of academic vagabondage, passing through a succession of faculty positions at Ohio State (where he met and married Dorothy Kerr), Pittsburgh, and Princeton before landing at Johns Hopkins in 1938. There, he devoted himself to developing a program in experimental nuclear physics while conducting significant research on the nature of spin-orbit coupling in 7Li. When later confirmed, this work is believed, as Hanna et al. (1997) report, to represent the first assignment of an excited nuclear level based on a microscopic quantum mechanical theory. |