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Interpretation:
The nature of all daughter nuclides formed in a radioactive decay series has to be chosen from the given options.
Concept Introduction:
Radioactive nuclides undergo disintegration by emission of radiation. All the radioactive nuclide do not undergo the decay at a same rate. Some decay rapidly and others decay very slowly. The nuclear stability can be quantitatively expressed by using the half-life.
The radioactive decay occurs till a stable nucleus is formed. Radioactive series is a decay process that occurs in series which begins with the long-lived radionuclide and ends up with nuclide having less
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Chapter 11 Solutions
Bundle: General, Organic, and Biological Chemistry, 7th + OWLv2 Quick Prep for General Chemistry, 4 terms (24 months) Printed Access Card
- The explanation for how a beta particle is produced in the nucleus of a radionuclide and then ejected involves the conversion (in a complex series of steps) of a a. proton to a neutron and a beta particle b. neutron to a proton and a beta particle c. beta particle to a proton and a neutron d. no correct responsearrow_forwardProblem 9-6 A radioactive isotope in a 9.0-mL vial has an intensity of 300. mCi. A patient is required to take 50. mCi intravenously. How much liquid should be used for the injection?arrow_forwardProblem 9-2 Thorium-223 is an alpha emitter. Write an equation for this nuclear reaction and identify the product formed.arrow_forward
- Characterize EACH of the three given statements as being TRUE or FALSE and then indicate the collective true-false status of the statements using the choices. (1) The penetrating power of beta particles exceeds that of gamma rays. (2) The most important fissionable radionuclide is uranium-235. (3) Beta particles have a charge of-1 and have no mass. All three statements are true Two of the three statemnents are true Only one of the statements is true None of the statements are truearrow_forward# 3 O no correct response 30. 210 83Bİ→4,He +2063TI + Complete the nuclear equation above. O alpha particle O beta particle O gamma ray Opositron particle 31. Potassium-44 decays by beta emission with a half-life of 22 minutes.. the isotope is allowed to decay for 88 minutes. What mass of K-44 in r MacBook Air F2 O00 F4 F3 000 F5 F8 $ 4 V & %arrow_forwardWhat daughter is produced by the following bombardment reaction?5525Mn + 11p ---> 10n + ________ a. Fe-54 b. Fe-55 c. Cr-55 d. Cr-54 e. no correct responsearrow_forward
- actions: Types and X Week 18 Concept Check Ervin !! pOLsdSUFh6n9jHY2beNbp9GDg0fG2LTumwbTCF2paecp714h_ihw/viewform?hr_su In the equation below X must be a ZY _ XY +_Z, -> Anion Cation Noble Gas Positron In the equation MgO + Fe - FeO + Mg, Fe replaces what element?arrow_forwardHomework Problem 9 Enter a nuclear equation for the most likely mode of decay for each of the following unstable nuclides. Part A Kr-74 Express your answer as a nuclear equation. ΑΣφ DA chemical reaction does not occur for this question Submit Request Answer Part B Y-77 Express your answer as a nuclear equation. ?arrow_forwardPlease Help me with right answer urgent what three things control how much decay occurs in an isotopic system?arrow_forward
- 8. A diagnostic tracer formed a cold spot during a diagnostic procedure. This means that the tracer was a. not absorbed by the organ being studied b. absorbed by the organ being studied c. not radioactive d. more than one response is correct e. no correct responsearrow_forwardConsider the radioactive decay chain A → B + alpha + gamma, B → C + alpha + gamma. What is the difference between the atomic numbers of A and C? 0 2 4 8 Submit Answer Tries 0/2arrow_forwardA chemist wishing to do an experiment requiring "Ca (half-life = 4.5 days) needs 4.0 µg of the nuclide. What mass of CaCO, must be ordered if it takes 96 h for delivery from the supplier? Assume that the atomic mass of Ca is 47.0 u. 47 Mass pg 10 Submit Answer Try Another Version 2 item attempts remaining otarrow_forward
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- Introduction to General, Organic and BiochemistryChemistryISBN:9781285869759Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar TorresPublisher:Cengage Learning
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