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  1. Arnold Johannes Wilhelm Sommerfeld, ForMemRS [1] ( German: [ˈzɔmɐˌfɛlt]; 5 December 1868 – 26 April 1951) was a German theoretical physicist who pioneered developments in atomic and quantum physics, and also educated and mentored many students for the new era of theoretical physics.

  2. Apr 22, 2024 · Arnold Sommerfeld was a German physicist whose atomic model permitted the explanation of fine-structure spectral lines. After studying mathematics and science at Königsberg University, Sommerfeld became an assistant at the University of Göttingen and then taught mathematics at Clausthal (1897) and.

    • The Editors of Encyclopaedia Britannica
  3. Nov 16, 2023 · Arnold Sommerfeld's prominent figure in the history of physics is not only notable for his vast erudition, but also for his significant contributions to atomic theory. This article will dive into Sommerfeld's biography, exploring his achievements and legacy in the scientific field.

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  5. Arnold Johannes Wilhelm Sommerfeld, ForMemRS ( German: [ ˈzɔmɐˌfɛlt]; 5 December 1868 – 26 April 1951) was a German theoretical physicist who pioneered developments in atomic and quantum physics, and also educated and mentored many students for the new era of theoretical physics.

  6. Dec 6, 2015 · Arnold Johannes Wilhelm Sommerfeld was a German theoretical physicist and renowned mentor of fellow physicists (he has supervised the greatest number of Nobel prize winners of any other supervisor). His notable achievements include the introduction of the 2nd and 4th quantum number, as well as x-ray wave theory. Sommerfeld.

  7. Quick Info. Born. 5 December 1868. Königsberg, Prussia (now Kaliningrad, Russia) Died. 26 April 1951. Munich, Germany. Summary. Arnold Sommerfeld was a theoretical physicist who worked in electromagnetic theory, relativity and quantum theory. View six larger pictures. Biography.

  8. Dec 5, 2017 · Sommerfeld is perhaps best known for his 1916 relativistic generalization of Bohr’s model of the atom, in which he proposed that electrons move in elliptical orbits as well as circular ones. He also did groundbreaking research on such topics as the fine-structure constant and the effects of electric and magnetic fields on atomic spectra.

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