211 A Bi nucleus undergoes alpha decay according to the reaction E Bi TI +He. Determine the following. (Let the atomic 81 mass of 211 Bi be 210.9873 u, the atomic mass of 20, TI be 206.9774 u and the atomic mass of He be 4.0026 u.) Не 83 81 (a) Q value (in MeV) for the process (Enter your answer to at least two decimal places.) MeV (b) Kinetic energy (in MeV) of the alpha particle after the decay (Enter your answer to at least two decimal places.) MeV (c) Kinetic energy (in MeV) of the daughter nucleus after the decay Mev

icon
Related questions
Question
211
211
A
83 Bi nucleus undergoes alpha decay according to the reaction Bi → 0 TI + He. Determine the following. (Let the atomic
81
207
mass of Bi be 210.9873 u, the atomic mass of 0 TI be 206.9774 u and the atomic mass of He be 4.0026 u.)
211
81
(a) Q value (in MeV) for the process (Enter your answer to at least two decimal places.)
MeV
(b) Kinetic energy (in MeV) of the alpha particle after the decay (Enter your answer to at least two decimal places.)
MeV
(c) Kinetic energy (in MeV) of the daughter nucleus after the decay
MeV
Transcribed Image Text:211 211 A 83 Bi nucleus undergoes alpha decay according to the reaction Bi → 0 TI + He. Determine the following. (Let the atomic 81 207 mass of Bi be 210.9873 u, the atomic mass of 0 TI be 206.9774 u and the atomic mass of He be 4.0026 u.) 211 81 (a) Q value (in MeV) for the process (Enter your answer to at least two decimal places.) MeV (b) Kinetic energy (in MeV) of the alpha particle after the decay (Enter your answer to at least two decimal places.) MeV (c) Kinetic energy (in MeV) of the daughter nucleus after the decay MeV
Expert Solution
steps

Step by step

Solved in 4 steps

Blurred answer
Similar questions
  • SEE MORE QUESTIONS