What is Decay: Definition and 999 Discussions

In nuclear physics, beta decay (β-decay) is a type of radioactive decay in which a beta particle (fast energetic electron or positron) is emitted from an atomic nucleus, transforming the original nuclide to an isobar of that nuclide. For example, beta decay of a neutron transforms it into a proton by the emission of an electron accompanied by an antineutrino; or, conversely a proton is converted into a neutron by the emission of a positron with a neutrino in so-called positron emission. Neither the beta particle nor its associated (anti-)neutrino exist within the nucleus prior to beta decay, but are created in the decay process. By this process, unstable atoms obtain a more stable ratio of protons to neutrons. The probability of a nuclide decaying due to beta and other forms of decay is determined by its nuclear binding energy. The binding energies of all existing nuclides form what is called the nuclear band or valley of stability. For either electron or positron emission to be energetically possible, the energy release (see below) or Q value must be positive.
Beta decay is a consequence of the weak force, which is characterized by relatively lengthy decay times. Nucleons are composed of up quarks and down quarks, and the weak force allows a quark to change its flavour by emission of a W boson leading to creation of an electron/antineutrino or positron/neutrino pair. For example, a neutron, composed of two down quarks and an up quark, decays to a proton composed of a down quark and two up quarks.
Electron capture is sometimes included as a type of beta decay, because the basic nuclear process, mediated by the weak force, is the same. In electron capture, an inner atomic electron is captured by a proton in the nucleus, transforming it into a neutron, and an electron neutrino is released.

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  1. M

    Why Does Rb87 Decay to Sr87, Not Rb85?

    I'm new here and have a very basic question that I haven't been able to see answered here or elsewhere, so forgive the banality if this seems trivial. I understand Rubidium has a "normal" atomic weight of 85 and often exists as its isotope Rb87. When Rb87 decays, why doesn't it decay to...
  2. avito009

    Uranium 236: Stability and Decay

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  3. I

    How Do Decay Modes Affect Isotope Dating Accuracy?

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  4. P

    Can Tritium Undergo Nuclear Decay in 1 Second or 1 Eon?

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  5. C

    What kinds of particles can decay to Lambda hyperons?

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  6. C

    How the two-body decay momentum distribution transform in lab frame?

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  7. F

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  8. S

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  9. F

    MHB Interpreting Constant A & Deriving k in Air Pressure Decay

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  10. S

    Imaginary free energy and decay rate

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  11. R

    Decay of a proton into a positron and a neutral pion

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  12. L

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  13. C

    Can one electron decay into an electron plus a phonon?

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  14. D

    How Can We Measure the Decay Rate of Uranium-238 Given Its Long Half-Life?

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  15. T

    Momentum Formula for Alpha Decay

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  16. Safinaz

    Off-shell Particle Decay: Does Mass Affect Cross Section?

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  17. R

    Finding Particle Combinations for Conservation Laws

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  18. V

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  19. majid313mirzae

    Alpha & Proton Decay: Explaining Unequal Rates

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  20. vanceEE

    Radon-226 Decay: Half-Life of Radium-226

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  21. Q

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  22. Q

    What is Decay Width & Its Relation to Particle Lifetime

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  23. C

    Updates: DMSO Decay After 18 Years - Share Results & Experiences

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  24. mudweez0009

    Natural Circulation and Decay Heat

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  25. kelvin490

    Net Charge of Daughter Atoms in Radioactive Decay: Does it Always Change?

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  26. C

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  27. S

    How Does the Decay Constant Influence Water Flow in Exponential Decay Models?

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  28. N

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  29. R

    When determining if a decay is possible, is there a method to use?

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  30. G

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  31. J

    How Many Bananas to Power a Light Bulb?

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  32. LotusTK

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  33. F

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  34. B

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  35. B

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  36. T

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  37. M

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  38. C

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  39. P

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  40. D

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  41. R

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  42. P

    How Can Radioactive Decay and Distance Formulas Be Combined in Physics?

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  43. Saitama

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  44. S

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  45. S

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  46. R

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  47. M

    What defines the kind of decay an isotope would go for?

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  48. S

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  49. E

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  50. T

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