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Parity nonconservation in neutron resonances in {238}U

Crawford B. E., Bowman J. D., Delheij P. P. J., Frankle C. M., Iinuma M., Knudson J. N., Lowie L. Y., Masaike A., Matsuda Y., Mitchell G. E., Penttila S. I., Postma H., Roberson N. R., Seestrom S. J., Sharapov E. I., et al.

Phys. Rev. C: Nucl. Phys., vol: 58, num: 2, 1225-1235, published: , US


   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=92÷97.

   Atomic nucleus.
      General problems of nuclear physics.
         Test of fundamental conservation laws in nuclear physics. Search for new particles in nuclear processes.

   Atomic nucleus.
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         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at E≤100 keV.
               Total cross sections.

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at E≤100 keV.
               Polarization phenomena and angular correlations.

   Atomic nucleus.
      Penetration of nuclear particles and gamma-quanta through matter.
         Penetration of neutrons through matter.
            Capture.

   Atomic nucleus.
      Penetration of nuclear particles and gamma-quanta through matter.
         Penetration of neutrons through matter.
            Secondary effects.

   Atomic nucleus.
      Penetration of nuclear particles and gamma-quanta through matter.
         Penetration of neutrons through matter.
            Scattering.

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      Weak interactions (experiment).
         Weak interaction effects in strong and electromagnetic processes.
            Parity violation in nuclear forces.

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      Weak interactions (theory).
         Nonleptonic interactions.
            Parity violating nuclear forces.

   Particles and fields.
      Weak interactions (theory).
         Models of weak interactions.
            C, P and T invariances of weak interactions.

   Particles and fields.
      Properties of stable particles and fundamental conservation laws (experiment).
         Discrete symmetries (C, P, T).