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Complete the following nuclear equations. 11. 42 K ve + -1 239 16. Pu 94 He...
Complete the following nuclear equations. 239 Pu 11. 42 K → 19 0e + 16. 94 4 He + 12. Be OY + 17. 32SU + go 142 13. 6 Li He + 18. 56 Ba + 3.Kr +3 ) n 3 14. Calculate the amount of energy released (in kJ/mol) when 235U reacts with one neutron form Te-137 and Zr-96 and 3 neutrons in a fission reaction. 235U = 235.043915 amu In = 1.008664 amu 137 Te = 136.925449...
can i get help with these please. Complete the following nuclear equations. 11. 42 K → e+ 16. 23° Pu He + 94 12. Be or 17. U & 13. Li He + 18. Ba + Kr +3) n 14. Calculate the amount of energy released (in kJ/mol) when 235U reacts with one neutron form Te-137 and Zr-96 and 3 neutrons in a fission reaction. 235U = 235.043915 amu In=1.008664 amu 137Te = 136.925449 amu%Zr = 95.908286 amu 15. Determine...
Complete each of the following nuclear equations: Part A: 42/19 K →?+0−1e Express your answer as a nuclear symbol. Part B: ?→86/36 Kr+1/0 n Express your answer as a nuclear symbol. Part C: 141/56 Ba→141/57 La +? Express your answer as a nuclear symbol. Part D: ?→4/2 He+ 239/94 Pu Express your answer as a nuclear symbol. Part E: 54/27 Co →?+0/+1 e Express your answer as a nuclear symbol.
Complete the following nuclear equations. 13. 3K e + 16. 339 Pu → He + alt 14. Be + Be + 8y 17. $U → + 231 Th 15. Li → He + 18. 23491 Pa → + 23492 U Nuclear Decay Series The figure maps the radioactive decay of uranium-238 to lead-206. Use the figure to answe the following questions. By B,Y 19.How many alpha particles are - 2 24 produced as one atom of uraniu
12.) An electron Complete the following nuclear equations and identify them as alpha, beta, or gamma decay: 13.) 13K → -e + (alpha, beta, gamma) 14.) 23 Pu → He + (alpha, beta, gamma) 15.) Be + Be + (alpha, beta, gamma) 16.) 23 → 2307h (alpha, beta, gamma) 17.) Li → He + (alpha, beta, gamma) 18.) Write an equation showing pratartinium-229 aninn throunh nlnha darm. fanminn til... 26
Complete the following nuclear reactions: 1. 1/0n + 40/18 Ar -> _____ +a 2. 1/0n + 235/92 U -> 98/40 Zr + ______ + 3(1/0n) 3. 1/0n + 235/92 U -> 133/51 Sb + 99/41 Nb + _____ (1/0n) 4. 14/7 N (a, ___) 17/8 O
1. Complete and balance the following equations for nuclear reactions that are used in particle accelerators to make elements beyond uranium: (a) He + 25. Es ? +2.n (b) 249CF +? 187 Lr + 2n (c) 235 U + C Cf + ?
Nuclear Reactions 1. Complete these nuclear equations. Indicate the symbol, the mass number, and the atomic number 13 27Al +,H→ 22Mg+ 12 2. Fill in the missing particle and establish a type of radioactive decay (alpha, beta, gamma). Twe 28Ni + Ra 204 Pb 3. Balance the following nuclear equations. Indicate if it is a fusion or fission reaction. +3 n 56 140 54 + o n
Lab Questions: 1. Complete the following nuclear equations: 234 U 234 Np + 92 93 214 Ро 84 210 Pb 82 234 Th 90 + 4 He 2 254 0 U 92 + e 2. Write a balanced equation for each of the following nuclear reactions
Please fill in the empty shells in excel and include how you calculated each of the cell values in excel. Mass of atomic constituents (MeV Mass Defect [MeV Mass Number Atomic Mass Mass of neutrons Mass of protons & electrons [Mev Mass defect per proton+neutron, aka Binding Energy per Nucleon [MeV Nuclide Atomic Mass |MeV] [amu [MeV) H-1 1 H-2 2 H-3 3 Не3 1.007825 938.79100 2,014101 3.016049 1 2 1876.12300 2809.43173 2 1 3.016029 2809.41292 He-4 2 7 4.002603...