in+ U→ Ba + Kr+3,n II. Calculate the energy released in the following fission reaction: The masses of the nuclei are: m, = 1.0087 u, m, = 235.0439 u, m, = 140.9141 u and m 91.8981 u.

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can you answer number 11?
10. Caleulate the dose caused by a 70-mrad absorbed dose of the following types of radiation: (a)
x-rays (b) beta rays (c) protons (d) a particles and (e) heavy ions.
¿n+ U→ '"Ba+ Kr+3'n
11. Calculate the energy released in the following fission reaction:
The masses of the nuclei are: m, = 1.0087 u, m, = 235.0439 u, m, = 140.9141 u and m,
91.8981 u.
Transcribed Image Text:10. Caleulate the dose caused by a 70-mrad absorbed dose of the following types of radiation: (a) x-rays (b) beta rays (c) protons (d) a particles and (e) heavy ions. ¿n+ U→ '"Ba+ Kr+3'n 11. Calculate the energy released in the following fission reaction: The masses of the nuclei are: m, = 1.0087 u, m, = 235.0439 u, m, = 140.9141 u and m, 91.8981 u.
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