Complete the decay process that is showing below and naming the unknown product also find the kinetic energy of the most energetic product that emitted during the decay. Where M, = 2.2eV/c 213 Bi 834 213y + a+ v
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![Complete the decay process that is showing below and naming the unknown
product also find the kinetic energy of the most energetic product that emitted
during the decay. Where Mp = 2.2eV/c?
2Bi
- 213y + a + v](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb4ecade4-fa45-4531-970e-e1d46e4f3f63%2Fbf998618-ef35-49a0-a3bc-a122c0551dd7%2Fsyo2qpo_processed.jpeg&w=3840&q=75)
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- Pls do fast within 5 minutes and i will give like for sure SOLUTION MUST BE IN TYPED FORM Two different samples of radioactive isotopes are decaying. The isotopes have initial amounts of c^(1) and c^(2) and half-lives of k^(1) and k^(2), respectively. Find an expression for the time t required for the samples to decay to equal amountsThe most common isotope of uranium 23 U has a half-life of 4.47 x 10⁹ years, decaying to 92 234 Th by a emission. i) ii) iii) iv) Write down the nuclear decay equation. What is meant by the decay constant? Calculate the mass of uranium would be required for an activity of 6.00 µμCi. Calculate the number of a particle emitted per second by 30.0 g of uranium. [1 Ci = 3.70 x 10¹⁰ decays/s]didnt asnwer part ii, please asnwer part ii
- Based on data acquired during a radioactive decay lab using an unusual assortment of geometrically novel dice, the following trendline equation for an R vs. rolls graph is obtained: y = 321.03e-0.41x. Determine the decay constant, mean life, half-life, Nor & Ro. decay constant = mean life = half-life = R₂ = No = rolls rolls decays/roll dice rolls-1Q4 Natural Uranium, as found on earth, consists of two isotopes in the ratio of ^ 235 U/ ^ 238 U=0.07 Assuming that these two isotopes existed in equal amounts at the time the earth was formed; calculate the age of the earth. [note: life times: ^ 238 U=6.52*10^ 9 years , ^ 235 U=1.02*10^ 9 years]How much energy (in MeV) is released in the following nuclear reaction? 'n+ U → Ba+ Kr +3 ,n 92 56 MeV
- An ancient artifact is found to contain 240 g of carbon and has an activity of 479 decays/min. Part A Q Search What is the approximate age of the artifact, to the nearest thousand years? (The rate of decay of carbon in living matter is R 16 decays/(g. min).) Express your answer to the nearest thousand years. 15| ΑΣΦ Submit Part B What would its initial activity have been? Ro= Request Answer 15. ΑΣΦ P Pearson W ? ? y Copyright © 2022 Pearson Education Inc. All rights reserved. | Terms of Use | Privacy Policy | Permissions | Contact Us | decays/min Revie 10:02 AM 12/12/2022The following reaction shows the beta decay of a °H nucleus. H- He + e +v 3 1 Determine the total energy (in kev) released in this decay. kevPart A A sample of U (T1= 1.59 × 10° yr) contains 2 233 6.10 x 1018 nuclei. What is the decay constant? Express your answer using three significant figures. ? = s-1 II
- 0.1 mg of pure 239Pu (emitting Alpha particles) was found to decay with an activity of 1.38 x 107 d.p.m. Calculate the half-life of the radionuclide. 239Pu is formed from the beta decay of the radionuclide 239Np. how many curie (Ci) 239Np are required to produce 0.10 mg of sample 239PUAnswers to d and e pleaseAt t = 0 s, you have a pure sample of an unknown substance. At t = 948 s, 36.8% of the substance remains. Determine the decay constant and what t will be when 12% of the substance remains. λ = s1 t=