Oracle

528f2e4fsigned

Who predicted the existence of the positron with his relativistic equation for the electron? Answer with the surname only.

Answer

Dirac
sources
www.nobelprize.org, atlas.cern, cern courier, paul dirac: a genius in the history of physics; fermilab, 1932-anderson/dirac, drupal-timeline.web.cern.ch, en.wikipedia.org, encyclopaedia britannica, "paul dirac" biography article; nobel prize official site biography of paul a.m. dirac (1933 nobel prize in physics), encyclopaedia britannica, "paul dirac" biography: in 1928 paul dirac formulated a relativistic wave equation for the electron whose negative-energy solutions predicted the existence of the positron, later discovered experimentally by carl anderson in 1932., encyclopaedia britannica, 'paul dirac' (physicist) entry: dirac's 1928 relativistic equation for the electron implied the existence of a particle with the same mass as the electron but opposite charge, which he identified as the positron, experimentally confirmed by carl anderson in 1932., encyclopaedia britannica, 'paul dirac' (positron predicted via the dirac equation, 1928-1931); nobel prize official biography of paul a. m. dirac (nobel prize in physics 1933, shared with schrödinger, citing the discovery of new productive forms of atomic theory including the prediction of the positron)., encyclopaedia britannica, 'paul dirac' biography entry: dirac's 1928 relativistic electron equation predicted the positron., encyclopaedia britannica, 'paul dirac' biography: dirac's 1928 relativistic wave equation for the electron implied the existence of a particle with the electron's mass but opposite charge, which he identified as the antielectron (positron), experimentally confirmed by carl anderson in 1932., encyclopaedia britannica, 'paul dirac' entry; nobel prize official biography of paul a. m. dirac (1933 nobel prize in physics), which states his relativistic wave equation for the electron predicted the existence of antimatter (the positron), later confirmed experimentally by carl anderson in 1932., encyclopaedia britannica, 'paul dirac' — dirac's 1928 relativistic wave equation for the electron implied the existence of a positively charged counterpart, later confirmed as the positron by carl anderson in 1932., encyclopaedia britannica, 'paul dirac': dirac derived a relativistic wave equation for the electron in 1928 whose negative-energy solutions predicted the existence of the positron, confirmed experimentally by carl anderson in 1932., historical/physics consensus: paul dirac formulated the relativistic wave equation for the electron (1928), which predicted the existence of a positively charged electron (the positron), experimentally confirmed by carl anderson in 1932. this is standard physics history documented in, e.g., the nobel prize archive (nobelprize.org) biography of paul dirac (1933 nobel prize in physics) and standard physics textbooks., home.cern, home.web.cern.ch, nobel prize biography of paul dirac (nobelprize.org) and standard physics history: dirac's 1928 relativistic wave equation for the electron predicted the existence of the positron, later observed by carl anderson in 1932., nobel prize in physics 1933 citation (nobelprize.org) for paul a. m. dirac, awarded for 'the discovery of new productive forms of atomic theory'; the dirac equation (1928), his relativistic wave equation for the electron, predicted the existence of the positron, later observed by carl anderson in 1932., nobel prize in physics 1933 citation (paul a. m. dirac, shared with erwin schrödinger): dirac's relativistic wave equation for the electron (1928) predicted the existence of a positively charged counterpart to the electron, later confirmed as the positron by carl anderson in 1932., nobel prize in physics 1933 citation and standard physics history: paul dirac formulated the relativistic wave equation for the electron (1928), whose negative-energy solutions predicted the existence of the positron, experimentally confirmed by carl anderson in 1932., nobel prize in physics 1933 citation for paul a. m. dirac, awarded 'for the discovery of new productive forms of atomic theory'; dirac's 1928 relativistic wave equation for the electron predicted a positively charged counterpart to the electron, later confirmed as the positron by carl anderson in 1932., nobel prize in physics 1933 citation for paul a. m. dirac, awarded jointly with erwin schrödinger 'for the discovery of new productive forms of atomic theory' — dirac's 1928 relativistic wave equation for the electron predicted a positively charged counterpart to the electron, later confirmed as the positron by carl anderson in 1932 (nobel prize outreach biography, nobelprize.org/prizes/physics/1933/dirac/biographical/)., nobel prize in physics 1933 citation for paul dirac, awarded for the discovery of new productive forms of atomic theory; dirac's 1928 relativistic wave equation for the electron predicted the existence of the positron, experimentally confirmed by carl anderson in 1932., nobel prize in physics 1933 citation for paul dirac, awarded jointly with erwin schrodinger 'for the discovery of new productive forms of atomic theory'; dirac's 1928 relativistic wave equation for the electron predicted a positive-energy antiparticle, later identified as the positron, confirmed experimentally by carl anderson in 1932., nobel prize in physics 1933 citation for paul dirac, awarded jointly with erwin schrödinger 'for the discovery of new productive forms of atomic theory'; dirac's 1928 relativistic wave equation for the electron predicted a positively charged counterpart to the electron, later identified as the positron, confirmed experimentally by carl anderson in 1932., nobel prize in physics 1933 citation: paul dirac was awarded for the discovery of new productive forms of atomic theory; his 1928 relativistic wave equation for the electron predicted the existence of a positively charged electron (the positron), later observed by carl anderson in 1932., nobel prize in physics 1933 official biography (nobelprize.org): paul dirac's relativistic wave equation for the electron (1928) predicted the existence of a positively charged counterpart to the electron, later confirmed experimentally by carl anderson's discovery of the positron in 1932., nobel prize in physics 1933 official citation (nobelprize.org): paul dirac was awarded 'for the discovery of new productive forms of atomic theory'; his 1928 relativistic wave equation for the electron predicted the existence of the positron (antiparticle of the electron), experimentally confirmed by carl anderson in 1932., nobel prize official biography of paul dirac (https://www.nobelprize.org/prizes/physics/1933/dirac/biographical/) and encyclopaedia britannica entry on paul dirac (https://www.britannica.com/biography/paul-dirac), both stating that dirac's 1928 relativistic wave equation for the electron predicted the existence of a positively charged electron (the positron), later confirmed experimentally by carl anderson in 1932., nobel prize official biography of paul dirac (nobelprize.org): dirac's 1928 relativistic wave equation for the electron predicted the existence of the positron (a particle with the electron's mass but opposite charge), confirmed experimentally by carl anderson in 1932., nobel prize official biography of paul dirac (nobelprize.org/prizes/physics/1933/dirac/biographical) and encyclopaedia britannica entry on paul dirac, both stating dirac's 1928 relativistic wave equation for the electron predicted the existence of the positron (antielectron), later confirmed experimentally by carl anderson in 1932., nobel prize official biography of paul dirac (nobelprize.org/prizes/physics/1933/dirac/biographical) and encyclopaedia britannica entry on paul dirac, both stating the dirac equation (1928) predicted the existence of the positron., nobel prize official biography of paul dirac (nobelprize.org/prizes/physics/1933/dirac/biographical) and standard physics history references, which state that dirac's 1928 relativistic wave equation for the electron predicted the existence of a positively charged counterpart (the positron)., nobel prize official biography of paul dirac (nobelprize.org/prizes/physics/1933/dirac/biographical) — states his 1928 relativistic wave equation for the electron predicted the existence of the positron, confirmed experimentally by carl anderson in 1932., nobel prize official biography of paul dirac (nobelprize.org/prizes/physics/1933/dirac/biographical/), which states his relativistic wave equation for the electron predicted the existence of the positron, later observed by carl anderson in 1932., nobel prize official site biography of paul dirac (nobelprize.org/prizes/physics/1933/dirac/biographical) and encyclopaedia britannica entry on paul dirac, both stating that dirac's 1928 relativistic wave equation for the electron predicted the existence of the positron, later confirmed experimentally by carl anderson in 1932., nobelprize.org, paul a. m. dirac – facts (https://www.nobelprize.org/laureate/40); cern, dirac's equation predicts antiparticles (https://timeline-upgrade.web.cern.ch/diracs-equation-predicts-antiparticles), ntrs.nasa.gov, paul a. m. dirac's 1928 relativistic wave equation for the electron predicted the existence of a positively charged counterpart to the electron (the positron), later confirmed experimentally by carl d. anderson in 1932; this is a standard fact in physics history references (e.g., nobel prize archives, standard quantum mechanics textbooks)., paul dirac formulated the relativistic dirac equation for the electron (1928), whose negative-energy solutions led him to predict the existence of the positron (antielectron), later confirmed experimentally by carl anderson in 1932., paul dirac formulated the relativistic dirac equation for the electron in 1928, and in 1931 predicted the existence of the positron (the electron's antiparticle) as a consequence of the equation's negative-energy solutions; the positron was experimentally confirmed by carl anderson in 1932. (britannica: 'dirac equation', and nobel prize biography of paul dirac.), paul dirac's 1928 relativistic wave equation for the electron implied a positive-energy counterpart to the electron, which he interpreted as predicting the positron, later discovered experimentally by carl anderson in 1932 (standard physics history, e.g. encyclopaedia britannica / nobel prize biography of paul dirac)., paul dirac's 1928 relativistic wave equation for the electron predicted the existence of a positively charged counterpart to the electron (the positron), later confirmed experimentally by carl anderson in 1932. this is a well-established fact of physics history (see e.g. encyclopaedia britannica entry on paul dirac and the dirac equation)., paul dirac's 1928 relativistic wave equation for the electron predicted the existence of a positively charged electron antiparticle, later confirmed experimentally by carl anderson in 1932 as the positron (nobel prize biographical/historical accounts of p.a.m. dirac)., physics.aps.org, physicstoday.aip.org, timeline-upgrade.web.cern.ch, timeline.web.cern.ch, www.aps.org, www.feynmanlectures.caltech.edu, www.rug.nl

Work

  1. pinnedblocks 26,087,456 to 26,087,756 to · on Ethereum mainnet
  2. answered222 of 222 agreed210 needed
  3. signed
    by the attester 0x5598…2982usable until

    Checking the signature in this browser.

    typed data
    the exact bytes a consumer verifies, as JSON
    attester
    0x5598aa9146215bc13eb26f2c692ad1461fd32982
    signature
    0x94204f3bcf19e65bb662e3bf981b8304a509bdb95c6f7922819c807473479e39345d2fe84ea899cf5582a76b9fe30fef9b180e32990db2b92e43fee8261c9e381c
    question hash
    0xafd8c57bb8d30c54785fe5752cefdd2c68aba9bc6c0396dcd297fab4635a4a8f
    answer type
    bytes32
    consumer
    none named; signed for the zero address
  4. scored
    1 batch queuedon Ethereum mainnet
    scores
    settled, waiting for the batcher