The mass equivalent of $931\, MeV$ energy is

  • A
    $1.66 \times 10^{-27}\,kg$
  • B
    $6.02 \times 10^{-24}\,kg$
  • C
    $1.66 \times 10^{-20}\,kg$
  • D
    $6.02 \times 10^{-27}\,kg$

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Similar Questions

Assume that the nuclear binding energy per nucleon $(B/A)$ versus mass number $(A)$ is as shown in the figure. Use this plot to choose the correct choice$(s)$ given below.
Figure: $222706-q$
$(A)$ Fusion of two nuclei with mass numbers lying in the range of $1 < A < 50$ will release energy.
$(B)$ Fusion of two nuclei with mass numbers lying in the range of $51 < A < 100$ will release energy.
$(C)$ Fission of a nucleus lying in the mass range of $100 < A < 200$ will release energy when broken into two equal fragments.
$(D)$ Fission of a nucleus lying in the mass range of $200 < A < 260$ will release energy when broken into two equal fragments.

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