Calculate the mass defect and nuclear binding energy per nu- cleon of each nuclide. a. O-16 (atomic mass = 15.994915 amu) b. Ni-58 (atomic mass = 57.935346 amu) c. Xe-129 (atomic mass = 128.904780 amu)
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A: Given value--- mass of proton: 1.6726219 * 10 ^ - 27 kg: mass of neutron: 1.674927471 * 10 ^ - 27…
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A: Given Atomic number is Z=8 Mass number is A=16 Mass of the 16O nuclide is M=15.994915 u
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A: The binding energy is given by Binding energy= (mass of nucleons-mass of nucleus)*c2Also
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A: given atomic mass = 67.9248476 u A = 68
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A: The generic symbol of a nuclide is given as X3064.
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- Calculate the binding energy for the following nuclides; expressd the binding energy in: (i) J/nucleon, and (ii) MeV/nucleon. (a) s (atomic mass = 31.97207 u) (b) 2U (atomic mass = 235.04393 u) (Atomic masses: proton (H = 1.00728 u; neutron (¿n) = 1.00867 u; electron (-je) = 0.00055 u; 1 u = 1.6605 x 10-2" kg; speed of light, c = 3.00 x 10 m/s; 1 MeV = 1.602 x 10-13 J) 7.MeV 2. Calculate the average binding energy per nucleon for Chromium, Cr MeV mass= 51.940509 u). ceilone 16 cchelp please
- 1. Find the total binding energy for Francium, 223Fr (atomic mass = 223.019733 u). 87 MeV 2. Calculate the average binding energy per nucleon for Chromium, 2Cr (atomic mass = 51.940509 u).1) Complete the following nuclear fission reaction of thorium-232. 232Th + n → 99Kr + 124Xe + ? a) 4He b) 10B c) 10n d) 11n e) 11B 2) Calculate the energy released in the reaction. The atomic masses are 232Th = 232.038051 u, 99Kr = 98.957606 u, and 124Xe = 123.905894 u. (Express your answer to five significant figures).Please have computer typed.
- Identify the daughter nuclide, the type of decay (for natural transmutations) and the nuclear reactionBinding energy per nucleon (MeV) 10 He He H Fo Part A 50 131, 50 100 150 Number of nucleons, A (mass number) Sn Value 200 Units U Estimate the total binding energy for Cu, using the figure. Express your answer to two significant figures and include the appropriate units. 250All the nuclides below undergo nuclei decay, write an equation for each process with an explanation. a) complete and explain the alpha decay for the below nuclides. i) AX → ii) 238U →>> 92 b) complete and explain the ß decay for the below nuclides. i) IN → ii) ¹4C → Completed forms to be made available for external moderation. c) complete and explain the B* decay for the below nuclides. i) 4X → ii) ¹3/N →
- The activity of a particular radioactive nuclide falls from 1 × 1011 Bq to 2 × 1010 Bq in 10 hours. Calculate the half life of the nuclide.What is the binding energy per nucleon for the following isotopes? Suppose that mn = 1.008665 u, m1H =1.007825 u, 1u= 931.494 MeV/c2. 1) What is the binding energy per nucleon for 90Sr? (Express your answer to six significant figures.) 2) What is the binding energy per nucleon for 129I? (Express your answer to six significant figures.) 3) What is the binding energy per nucleon for235U? (Express your answer to six significant figures.) 4) What is the binding energy per nucleon for 56Fe? (Express your answer to six significant figures.)Identify the daughter nuclide, the type of decay (for natural transmutations) and the nuclear reaction