A particle moving with 340 MeV of kinetic energy decays according to: Σ - π + p What is the total kinetic energy of the decay products? Mev
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- Answers to d and e pleaseThe decay mode of the negative muon is μ- → e-+v-e +vπ. Find the energy released in MeV.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 = XC
- A 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 YesIf a Σ+ at rest decays into a proton and a p0, what is the total kinetic energy of the decay products?what is the rest energy in Mev of an atom with an mass of 9.8 u
- A certain particle has a half-life of 179. s. What is the decay constant, in s-1?The mass of a sample is 0.91 u. What is its mass in MeV/c2?A beam of 8.47-MeV protons is incident on a target of 27/13 Al. Those protons that collide produce the reaction shown below. p + 27 13 Al → 27 14 Si + n ( 27 14 Si has a mass of 26.986721 u.) Neglecting any recoil of the product nucleus, determine the kinetic energy of the emerging neutrons. Answer:_____MeV Sorry the formatting is kinda off, im not sure how to fix it. Thank you!
- Consider the following decay: 209 83 Bi->> 205 TI + α. 81 209 Bi has a mass of 208.9803987 u, 205 TI has a mass of 204.9744275 u, and a has a mass of 4.002603 u. 81 83 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 a particle in terms of c. For an a particle, E, = 3.727 GeV. [NOTE: G stands for giga- which means 109 &M stands for mega- which means 106.] XCConsider the fission reaction 141 n + U -> 235, 92U syXe + 92 38Sr +3n The masses of the components are 235 235.04393 세 xe| 140.여 2678 92 5 91.911 038 n 1.00 866 U Find the energy released in MeV Use the editor to format your answerWhat is the approximate uncertainty in the mass of a muon, as determined from its decay lifetime? Assume it's decay lifetime is 2.30 us. 2.548 x10-4° kg