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  1. Lajos Jánossy (2 March 1912, Budapest – 2 March 1978, Budapest) was a Hungarian physicist, astrophysicist and mathematician and a member of the Hungarian Academy of Sciences. His primary research fields were astrophysics , nuclear physics , quantum mechanics , mathematical physics , and statistics , as well as electrodynamics and ...

  2. 20 de feb. de 2019 · This chapter includes a brief biography of Lajos Jánossy (1912–1978) presented by Sándor Varró (Sect. 18.1) and his translation into English from Hungarian of Jánossys group paper of 1954 year “Coincidences of photons traveling in coherent beams of light” (Sect. 18.2).

    • Sándor Varró
    • varro.sandor@wigner.mta.hu
    • 2019
  3. LAJOS JÁNOSSYS BIOGRAPHICAL BACKGROUND Lajos Jánossy was a leading personality of Hungarian physical research in the Fifties and the Sixties of the previous century. The characterization „leading per- sonality” here means both his authority and reputation as an excellent scientist, as well as his institutional position in the ...

  4. 1 de feb. de 2013 · It was at about that time that a research student of Kolhörster, Lajos Jánossy, who happened to be borne in the discovery year of 1912, started his research in cosmic ray physics. Later he did important research in London, Manchester and Dublin, and wrote one of the first comprehensive monographs on cosmic rays.

  5. 2 de mar. de 2023 · On 2 March, the Joint Institute for Nuclear Research remembers one of its founders, the prominent Hungarian physicist Lajos Jánossy (1912–1978), an academician of the Hungarian Academy of Sciences, who was a member of the Scientific Council of the Institute during the development of JINR.

  6. 1 de feb. de 2013 · It was at about that time that a research student of Kolhörster, Lajos Jánossy, who happened to be borne in the discovery year of 1912, started his research in cosmic ray physics. Later he did...

  7. László Székely. Abstract. The late Hungarian physicist Lajos Jánossy is respected in international physics first of all for his results achieved in the field of cosmic radiations, but his work in the alternative, Lorentzian tradition of relativity theory is also of historical importance.