If a Σ+ at rest decays into a proton and a p0, what is the total kinetic energy of the decay products?
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If a Σ+ at rest decays into a proton and a p0, what is the total kinetic energy of the decay products?
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- Consider the following decay: 232 U 92 a mass of 4.002603 u. 228 Th+ a. 232 U has a mass of 232.0371562 u, 228 Th has a mass of 228.0287411 u, and a has 90 92 90 A.) Determine the disintegration energy (Q-value) in MeV. Q= B.) Determine the KE of the daughter in MeV. KED= C.) Determine the KE of the a particle in MeV & as a factor of Q. KE= KE=Qx D.) Determine the speed of the particle in terms of c. For an a particle, E = 3.727 GeV. [NOTE: G stands for giga- which means 10º & M stands for mega- which means 106.] Vα = XCA nuclei has a mass of 6.51×10-27 kg. What is its mass in Mev/c²? 3.65x10³ Mev/c² 3.92 Mev/² 7.85x10³ Mev/c² Question 3 Is the following decay possible? 232Th (Z=90) 236µ (Z = 92) + a 000 It's impossible to tell No Yes(a) Calculate the total kinetic energy of the decay products for the decay A° → p + n. Assume the A° is initially at rest. (b) Find the ratio of the kinetic energy of the pion to the kinetic energy of the proton. (c) Find the kinetic energies of the proton and the pion for this decay.
- hat is the emergy released in this 8+ nuclear reaction Nb Ze + Se? (The atomic ass of Nb is 87.918331 u, the atomic mass of Zr is 87.910227 u, and the mass of the sitron is 0.000548 u) a) 8.24 MeV b) 8.67 MeV c) 8.06 MeV d) 6.53 MeV e) 7.04 MeV66/28Ni (mass = 65.929 1 u) undergoes beta decay to 56/29 (mass = 65.928 9 u). (a) Write the complete decay formula for this process. (b) Find the maximum kinetic energy of the emerging electrons.The decay constant for 198Au is 2.97 x 10-6 s-1. Calculate the half life.