3. A proton is confined in a uranium nucleus of radius 7.20x10-15 m. Determine the proton's kinetic energy assuming its momentum equals Ap.
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Given,
The radius of a uranium nucleus is
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- a) Particles with MeV energy b) Find the maximum approach distances of 8 MeV energetic particles to the gold nucleus15. The nucleus 24Mg has a 2* first excited state at 1.369 MeV and a 4+ second excited state at 4.123 MeV. The 2* state has a magnetic dipole moment of 1.02 uN and an electric quadrupole moment of -0.27 b. Which model would be most likely to provide an accurate description of these states? Justify your choice by calculating parameters appropriate to your choice of model.Nuclear Physics Item 12
- Question 30 Which of the following is true about the Klein-Gordon equation? O The Klein-Gordon equation is the relativistic generalization of the Schrodinger equation. O The Klein-Gordon equation applies to spin-zero particle. O The Klein-Gordon equation correctly predicts the spin of the electron. O The Klein-Gordon equation gives the correct energy levels in hydrogen.B3. In the alpha decay of uranium 232U → 228Th + He, how much kinetic energy (in MeV) will 90 the thorium atom have. Given that Q = 6.46 MeV and the atomic mass of 220Th is 228.028731u. Express the values to 3 significant figures, if necessary.A certain chlorine nucleus has a radius of approximately 4.0 * 10^15 m. How many neutrons are in this nucleus?
- Now you have a nucleus with 20 protons at x = 7.9 Angstroms on the x-axis. How much work would it take to bring in ANOTHER nucleus with 4 protons from 1 m away and place it at y = 7.0 Angstroms on the y-axis? Question 10 options: A 50.4 eV B 100.8 eV C -8.2 eV D 109.0 eV3. A beam of helium-3 atoms (m = 3.016 u) is incident on a target of nitrogen-14 atoms (m = 14.003 u) at rest. Dur- ing the collision, a proton from the helium-3 nucleus passes to the nitrogen nucleus, so that following the col- lision there are two atoms: an atom of "heavy hydro- gen" (deuterium, m = 2.014 u) and an atom of oxygen-15 15.003 u). The incident helium atoms are moving at (m a velocity of 6.346 × 10° m/s. After the collision, the deu- terium atoms are observed to be moving forward (in the same direction as the initial helium atoms) with a velocity of 1.531 x 10' m/s. (a) What is the final velocity of the oxygen-15 atoms? (b) Compare the total kinetic energies before and after the collision.43. During a particular nuclear reaction, some mass is converted to energy. If the reactants in this process have 0.00562 u more mass than the products, calculate the energy of the products that comes from the reactants and characterize the reaction as endothermic or exothermic. A. 5.2 MeV, exothermic B. 5.2 MeV, endothermic C. 1.9 MeV, exothermic D. 1.9 MeV, endothermic
- Particle Electron Proton Neutron Relative Charge -1 +1 0 What is: Electric Charge (C) -1.60 x 10-19 +1.60 x 10-19 0 a) The mass defect? Relative Mass (u) 5.485779 x 10-4 1.007276 1.008665 1u = 1.6605 x 10-27 kg 1eV = 1.60 x 10-19 Joules The 'cheating' equivalence shortcut 1u- 931.5 MeV He is the most abundant isotope of helium. Its mass is 6.6447x 10-27kg. Mass (kg) b) The binding energy of the nucleus in joules? 9.109390 x 10-31 1.672623 x 10-27 1.674929 x 10-27An isotope of beryllium (atomic mass of 7.017 u) emits a y ray and recoils with a speed of 1.54 × 104 m/s. Assuming that the isotope is stationary to begin with, find the wavelength of the y ray. min Before emission VBe After emissionThe isotope of Curium 242Cm has a half-life of 160 days and emits alpha particles with an energy 6.1MeV. What is the initial power emitted by a sample of 242Cm with a starting number of N0 = 1018 atoms? Select one: a. 2.7 W. b. 49 mW. c. 308 kW. d. 15.6 W.