$A$ tokamak fusion test reactor works on

  • A
    bombardment of thermal neutrons with uranium-$235$
  • B
    magnetic confinement of plasma
  • C
    electric discharge under high voltage bias
  • D
    acceleration of charged particles in electromagnetic fields

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The binding energy of a deuteron is $2.2 \, MeV$ and the binding energy of $_2^4He$ is $28 \, MeV$. If two deuterons fuse to form a $_2^4He$ nucleus,the energy released is ...... $MeV$.

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If $200 \, MeV$ energy is released in the fission of a single nucleus of ${}_{92}^{235}U$,the number of fissions required per second to produce a power of $1 \, kW$ is:

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Energy released in the fission of a single ${ }_{92} U^{235}$ nucleus is $200 \ MeV$. The fission rate of a ${ }_{92} U^{235}$ fuelled reactor operating at a power level of $32 \ kW$ is:

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