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separation of isotopes वाक्य

"separation of isotopes" हिंदी मेंseparation of isotopes in a sentence
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  • Lomanitz worked at the Berkeley Radiation Laboratory on a new method of electromagnetic separation of isotopes.
  • In 1931, he began work with the separation of isotopes that resulted in the discovery of deuterium.
  • At Liverpool they focused on the separation of isotopes through thermal diffusion as was suggested in the Frish / Peierls memorandum.
  • An Australian company has been actively developing a novel process for uranium enrichment, Separation of Isotopes by Laser Excitation ( SILEX ).
  • His research focused on " electromagnetic studies, the separation of isotopes, isolation of spectrometers, which he eventually built with Josef Mattauch.
  • The centrifugal separation of isotopes was first suggested by Aston and Lindemann in 1919 and the first successful experiments were reported by Beams and Haynes on isotopes of chlorine in 1936.
  • He received his William Smythe, from which he received his PhD in physics ( " summa cum laude " ) in 1936, studying the separation of isotopes.
  • In his career, Roth has authored more than one hundred and fifty scientific articles and several books on applied nuclear chemistry, and has invented several methods for industrial separation of isotopes.
  • Among those industries discussed were  aluminum, ferro-alloys, the treatment of ores, paper, and a plant for the separation of isotopes .  Their vision, at least publicly, was bold, with one authority comparing the potential industrial development in the Congo to the German Ruhr.
  • Topics assigned to Gustav Hertz s Institute G included : ( 1 ) Separation of isotopes by diffusion in a flow of inert gases, for which Gustav Hertz was the leader, ( 2 ) Development of a condensation pump, for which Justus M�hlenpfordt was the leader, and ( 3 ) Development of a theory of stability and control of a diffusion cascade, for which Barwich was the leader.
  • Goals of Ardenne s Institute A included : ( 1 ) Electromagnetic separation of isotopes, for which von Ardenne was the leader, ( 2 ) Techniques for manufacturing porous barriers for isotope separation, for which Peter Adolf Thiessen was the leader, and ( 3 ) Molecular techniques for separation of uranium isotopes, for which Max Steenbeck was the leader; Steenbeck was a colleague of Hertz at Siemens.
  • Goals of Ardenne's Institute A included : ( 1 ) Electromagnetic separation of isotopes, for which von Ardenne was the leader, ( 2 ) Techniques for manufacturing porous barriers for isotope separation, for which Peter Adolf Thiessen was the leader, and ( 3 ) Molecular techniques for separation of uranium isotopes, for which Max Steenbeck was the leader; Steenbeck was a colleague of Hertz at Siemens.
  • Von Ardenne was made head of Institute A, Goals of Manfred von Ardenne s Institute A included : ( 1 ) Electromagnetic separation of isotopes, for which von Ardenne was the leader, ( 2 ) Techniques for manufacturing porous barriers for isotope separation, for which Peter Adolf Thiessen was the leader, and ( 3 ) Molecular techniques for separation of uranium isotopes, for which Max Steenbeck was the leader.
  • Von Ardenne was made head of Institute A, Goals of Manfred von Ardenne's Institute A included : ( 1 ) Electromagnetic separation of isotopes, for which von Ardenne was the leader, ( 2 ) Techniques for manufacturing porous barriers for isotope separation, for which Peter Adolf Thiessen was the leader, and ( 3 ) Molecular techniques for separation of uranium isotopes, for which Max Steenbeck was the leader.
  • Topics assigned to Gustav Hertz s Institute G included : ( 1 ) Separation of isotopes by diffusion in a flow of inert gases, for which Gustav Hertz was the leader, ( 2 ) Development of a condensation pump, for which Justus M�hlenpfordt was the leader, ( 3 ) Design and build a mass spectrometer for determining the isotopic composition of uranium, for which Werner Sch�tze was the leader, ( 4 ) Development of frameless ( ceramic ) diffusion partitions for filters, for which Reinhold Reichmann was the leader, and ( 5 ) Development of a theory of stability and control of a diffusion cascade, for which Heinz Barwich was the leader; Barwich had been deputy to Hertz at Siemens.
  • This team acted as research supervisors of major engineering projects, which include : the startup of the first physical reactor, Ph ( 1946 ); the design, construction, and startup of plants for plutonium production, radiochemical extraction, and metallurgy ( Kurchatov, plants A, B, V, Chelyabinsk-40, in 1948 and 1949 ); the development of a physical reactor and an industrial heavy-water one ( Alikhanov, Laboratory no . 3, 1949; OK-180, Chelyabinsk-40, 1951 ); the development of a manufacturing technology of diffusion separation of uranium-235 and uranium-238 ( I . K . Kikoin, plant D-1, Sverdlovsk-65, 1949 1951 ); the development of industrial mass separators for the electromagnetic separation of isotopes of uranium ( L . A . Artsimovich, SU-20, Sverdlovsk-45, 1950 ); and, finally, the design calculation, modeling, construction, and production of the first atomic bomb ( Khariton, Arzamas-16, 1946 1949 ) ( Gaponov ).

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