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Полуфеноменологическая аппроксимация сумм экспериментальных радиационных силовых функций дипольных гамма-переходов в диапазоне Eγ≈Bn ля области масс 40 ≥ A ≥ 200

Суховой А.М./Фурман В.И./Хитров В.А.

Ядер. физ., vol: 71, num: 6, 1009-1024, published: 14 June 2008,


   Nuclear reactor physics.
      Neutron physics. Nuclear data.
         γ-rays and matter interaction-characteristics.

   Nuclear reactor physics.
      Neutron physics. Nuclear data.
         Gammas production cross sections.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=79÷82.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=71÷78.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=64÷70.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=60÷63.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=54÷59.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=47÷53.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=32÷38.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=27÷31.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=19÷21.

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (theory).
            Electromagnetic transition rates in nuclei (A>150).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (theory).
            Electromagnetic transition rates in nuclei (90<A≤150).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (theory).
            Electromagnetic transition rates in nuclei (40<A≤90).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (theory).
            Electromagnetic transition rates in nuclei (A≤40).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (experiment).
            Electromagnetic transition rates in nuclei (A>150).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (experiment).
            Electromagnetic transition rates in nuclei (90<A≤150).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (experiment).
            Electromagnetic transition rates in nuclei (40<A≤90).

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (experiment).
            Electromagnetic transition rates in nuclei (A≤ 40).

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at E≤100 keV.
               Radiative neutron capture (A>150).

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at E≤100 keV.
               Radiative neutron capture (90<A≤150).

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at E≤100 keV.
               Radiative neutron capture (40<A≤90).

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at E≤100 keV.
               Radiative neutron capture (A≤40).

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