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  2. Cobalt-60 - Wikipedia

    en.wikipedia.org/wiki/Cobalt-60

    The main advantage of 60 Co is that it is a high-intensity gamma-ray emitter with a relatively long half-life, 5.27 years, compared to other gamma ray sources of similar intensity. The β-decay energy is low and easily shielded; however, the gamma-ray emission lines have energies around 1.3 MeV, and are highly penetrating.

  3. Isotopes of cobalt - Wikipedia

    en.wikipedia.org/wiki/Isotopes_of_cobalt

    Cobalt-60 (60 Co or Co-60) is used in radiotherapy. It produces two gamma rays with energies of 1.17 MeV and 1.33 MeV. The 60 Co source is about 2 cm in diameter and as a result produces a geometric penumbra, making the edge of the radiation field fuzzy. The metal has the unfortunate habit of producing fine dust, causing problems with radiation ...

  4. Gamma ray - Wikipedia

    en.wikipedia.org/wiki/Gamma_ray

    Radioactive decay scheme of 60 Co Gamma emission spectrum of cobalt-60. One example of gamma ray production due to radionuclide decay is the decay scheme for cobalt-60, as illustrated in the accompanying diagram. First, 60 Co decays to excited 60 Ni by beta decay emission of an electron of 0.31 MeV. Then the excited 60 Ni

  5. Gamma spectroscopy - Wikipedia

    en.wikipedia.org/wiki/Gamma_spectroscopy

    Germanium gamma spectrum of 60 Co (Cobalt-60); compare with the NaI spectrum above. Semiconductor detectors, also called solid-state detectors, are fundamentally different from scintillation detectors: They rely on detection of the charge carriers (electrons and holes) generated in semiconductors by energy deposited by gamma ray photons.

  6. Decay scheme - Wikipedia

    en.wikipedia.org/wiki/Decay_scheme

    Decay scheme of 60 Co. These relations can be quite complicated; a simple case is shown here: the decay scheme of the radioactive cobalt isotope cobalt-60. [1] 60 Co decays by emitting an electron with a half-life of 5.272 years into an excited state of 60 Ni, which then decays very fast to the ground state of 60 Ni, via two gamma decays.

  7. File:60Co gamma spectrum energy-de.svg - Wikipedia

    en.wikipedia.org/wiki/File:60Co_gamma_spectrum...

    Deutsch: Gamma spectrum of 60Co, observed with a germanium detector. x-axis gauged to energy. ... Cobalt-60; Gamma ray; Gamma spectroscopy; Global file usage.

  8. Samut Prakan radiation accident - Wikipedia

    en.wikipedia.org/wiki/Samut_Prakan_radiation...

    Cobalt-60 (60 Co) is a synthetic radioactive isotope of cobalt, with a half-life of 5.27 years, and emits highly penetrating gamma rays. It is commonly used as a radiation source for radiotherapy and equipment sterilization in hospital settings, and also has industrial uses.

  9. Cobalt therapy - Wikipedia

    en.wikipedia.org/wiki/Cobalt_therapy

    Cobalt-60, produced by neutron irradiation of ordinary cobalt metal in a reactor, is a high activity gamma-ray emitter, emitting 1.17 and 1.33 MeV gamma rays with an activity of 44 TBq/g (1,200 Ci/g). The main reason for its wide use in radiotherapy is that it has a longer half-life, 5.27 years, than many other gamma emitters. However, this ...