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For the different possible fission and fusion reactions given below, calculate the energy released during the...
When 235U fissions, the fission products are not
always the same and exactly two neutrons are not always released.
An example of one fission reaction is
You may want to use the following table of atomic masses:
Table of masses
141Ba
140.9144 u
144Ba
143.9229 u
139Te
138.9347 u
141Cs
140.9196 u
90Kr
89.91952 u
91Kr
90.92344 u
92Kr
91.92615 u
94Zr
93.90632 u
93Rb
92.92157 u
235U
235.0439 u
p
1.00728 u
n
1.00867 u
1. What is the...
Please show all work
thank you!
(Assignment 25 (Chapter 19) Nuclear Fission and Fusion < 3 of 10 > Review | Constants Periodic Table - Part A Certain heavy nuclei undergo nuclear fission when struck by neutrons, breaking apart into fragment nuclel and releasing a large amount of energy. Light nuclei undergo nuclear fusion when healed to very high temperatures, forming heavier nuclei and releasing large amounts of energy. Sort these isotopes by whether they are most likely to undergo...
When 235U fissions, the fission products are not always the same and exactly two neutrons are not always released. An example of one fission reaction is You may want to use the following table of atomic masses: Table of masses 141Ba 140.9144 u 144Ba 143.9229 u 139Te 138.9347 u 141Cs 140.9196 u 90Kr 89.91952 u 91Kr 90.92344 u 92Kr 91.92615 u 94Zr 93.90632 u 93Rb 92.92157 u 235U 235.0439 u p 1.00728 u n 1.00867 u 1) What is the...
a) Calculate the energy released in the neutron-induced fission n + 235U --> 92Kr + 142Ba + 2n given the neutron is 1.008665 u, the mass of is 235 U 235.043924 u, the mass of 92Kr is 91.926269 u, and the mass of 142Ba is 141.916361 u. b) Confirm that the total number of nucleons and total charge are conserved in this reaction. The atomic mass is 1.66053904 X 10-27 kg.
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 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...
What is the source of the energy released during nuclear fission and fusion? What equation allows us to calculate the amount of energy released?
The illustration shows one
possible way that a nucleus of uranium-235 (235U) can undergo
neutron-induced fission. (a) Rank the following objects in order of
their binding energy per nucleon, from largest to smallest. If any
two objects have the same binding energy per nucleon, state this.
Explain how you made your ranking. (i) The uranium-235 (235U)
nucleus (ii) The tellurium-134 (134Te) nucleus (iii) The
zirconium-99 (99Zr) nucleus (iv) The three neutrons Activity 27-4
[continued]. (b) Using your results from part...
Calculate the percent activity of the radioactive isotope iridium-192 remaining after two half-lives. activity: While exploring a coal mine, scientists found plant fossils which had been preserved by an earthquake in the ceiling of the mine. Samples taken from one of the fossils had carbon-14 activities of 40.0 counts/min. A reference sample of the same size from a plant alive today has a carbon-14 activity of 160.0 counts/min. If carbon-14 has a half-life of 5730 years, what is the age...
Calculate the energy released when 1.00 kg of uranium-235 undergoes the following fission process. Answer in Joules. ¹₀n + ²³⁵₉₂U → ¹³⁶₅₃I + ⁹⁶₃₉Y + 4¹₀n Iodine-136: 135.8401 amu Yttrium-96: 95.8629 amu Uranium-235: 234.9935 amu Neutron: 1.00867 amu