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  1. Muon - Wikipedia

    • Muons were discovered by Carl D. Anderson and Seth Neddermeyer at Caltech in 1936 while studying cosmic radiation. Anderson noticed particles that curved differently from electrons and other known partic… See more

    Muon Sources

    Muons arriving on the Earth's surface are created indirectly as decay products of collisions of cosmic rays with particles of the Earth's atmosphere. When a cosmic ray proton imp… See more

    Wikipedia
    Muon Decay

    Muons are unstable elementary particles and are heavier than electrons and neutrinos … See more

    Wikipedia
    Anomalous Magnetic Dipole Moment

    The anomalous magnetic dipole moment is the difference between the experimentally observed value of the magnetic dipole moment and the theoretical value predicted by the Dira… See more

    Wikipedia
    Electric Dipole Moment

    The current experimental limit on the muon electric dipole moment, |dμ| < 1.9 × 10−19 e·cm set by the E821 experiment at the Brookhaven, is orders of magnitude … See more

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  2. Differences between muons and electrons:
    1. Mass: Muons are about 200 times heavier than electrons.
    2. Stability: While electrons are stable, muons exist for only about two microseconds before they decay.
    3. Decay process: Muons decay into an electron, a neutrino, and an antineutrino via the weak force12.
    4. Interactions: Both muons and electrons interact via electromagnetic, weak, and gravitational forces3.
    Learn more:
    Muons are about 200 times heavier than the electron. While this larger mass makes them interesting, it also makes them unstable. Whereas electrons live forever, muons exist for only about two microseconds—or two millionths of a second—before they decay.
    www.symmetrymagazine.org/sites/default/files/lega…
    Unlike the electron, which appears to be completely stable, the muon decays after an average lifetime of 2.2 millionths of a second into an electron, a neutrino, and an antineutrino. This process, like the beta decay of a neutron into a proton, an electron, and an antineutrino, occurs via the weak force.
    www.britannica.com/science/subatomic-particle/Ch…
    Indeed, the muon and the electron share many of the same properties. Like the electron, the muon interacts via the electromagnetic, weak and gravitational forces. Unlike the electron, muons are not stable particles. Heavy particles seldom are. They’re heavy, and because they otherwise act like electrons, they decay to electrons.
    pasayten.org/the-field-guide-to-particle-physics/muon
     
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  4. What's the difference between muons and electrons in …

    Sep 6, 2017 · Muons are about 200 times heavier than electrons; muons are about 100 MeV, whereas electrons are about 0.5 MeV. It follows that whereas an electron is stopped in the ECAL, a muon just ploughs through it and into the …

     
  5. What is the difference between an Electron, a Tau, and a Muon?

  6. Muon | Elementary particle, Lepton, Weak interaction | Britannica

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    Apr 8, 2021 · It turns out that when you expose particles known as muons—aka “fat electrons”—to intense magnetic fields, they behave in ways that can’t be explained by physics as we know it, suggesting...

  8. How different are electrons and muons after all?

    Jun 21, 2021 · However, within the advent of the Standard Model (SM) of particle physics in the late 1960s, it was recognized that the electron, muon and tau leptons have after all very similar properties. They all interact with the photon …

  9. 1 - What are muons? What is muon science? - Cambridge …

  10. Science Made Simple: What Are Muons? - SciTechDaily

    Apr 8, 2021 · Muons are similar to electrons but weigh more than 207 times as much. That’s about the difference between an adult person and a small elephant. The muon is part of the lepton group. Leptons are a type of fundamental …

  11. The Muon — The Pasayten Institute

    It’s about two hundred times the mass of the electron. The muon’s electric charge is identical with that of the electron. Indeed, the muon and the electron share many of the same properties. Like the electron, the muon interacts via …

  12. How does the muon differ from the electron? | Physics Today

  13. Muon -- from Eric Weisstein's World of Physics

  14. Subatomic particle - Electron, Muon, Tau | Britannica

  15. Muons: The Subatomic Particles Shaking Up the World of Physics

  16. DOE Explains...Muons | Department of Energy

  17. Muons | University of Oxford Department of Physics

  18. What’s next for physics’ standard model? Muon results ... - Nature

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  22. Is there any idea why the electric charges of electron and muon …