Chemistry: Atoms First V1
Chemistry: Atoms First V1
1st Edition
ISBN: 9781259383120
Author: Burdge
Publisher: McGraw Hill Custom
Question
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Chapter 19, Problem 19.3KSP
Interpretation Introduction

Interpretation:

The remaining mass of sample of 126I after 24h has to be identified from the given option.

Concept introduction:

  • Unstable nuclei emit radiation spontaneously to become stable nuclei by losing energy. This process of emission of radiation by unstable nuclei is known as radioactive decay.
  • Radioactive decay is in the first order kinetics. Rate of radioactive decay at a time t is,

lnNtN0=ktwhere,k=FirstorderrateconstantN0=number of radioactive nuclei at time zeroNt=number of radioactive nuclei at a time,t

Expert Solution & Answer
Check Mark

Answer to Problem 19.3KSP

The correct option is option (b) 2.42g

Explanation of Solution

Reason for correct option

To find: The remaining mass of sample of 126I after 24h

The remaining mass of sample of 126I after 24h is 2.42g

The remaining mass of sample of 126I after 24h is calculated

Given,

Rate constant,k=0.0533d1Time=24h=1dOriginalmassofsample=2.55g

Suppose the number of radioactive nuclei at time zero is N0 and at a time t is Nt,

lnNtN0=kt

Radioactive nuclei at time zero and time t are the initial concentration and the final concentration.

So the equation can also be written as,

ln[A]t[A]0=kt

Therefore,

The remaining mass of sample of 126I after 24h is,

ln[A]t[A]0=ktln[A]t2.55g=(0.0533d1)(1d)ln[A]t2.55g=(0.0533)[A]t2.55g=0.948[A]t=2.42g

The remaining mass of sample of 126I after 24h is 2.42g

Hence the correct option for the remaining mass of sample of 126I after 24h is option b

Reasons for incorrect options:

Write all the remaining mass of sample of 126I after 24h given in the options except option b.

(a) 0.948g

(c) 0.136g

(d) 0.710g

(e) 0.873g

The remaining mass of sample of 126I after 24h in the given reaction is found as 2.42g.

So, this value of remaining mass of sample of 126I after 24h is not matching with any of the above given remaining mass of sample of 126I after 24h in remaining options.

Hence the incorrect options are a, c, d and e.

Conclusion

The correct option for remaining mass of sample of 126I after 24h is identified from the given options. The remaining mass of sample of 126I after 24h is determined by using the data’s given for the radioactive decay.

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Chapter 19 Solutions

Chemistry: Atoms First V1

Ch. 19.4 - The gas-phase reaction of nitric oxide with...Ch. 19.4 - Prob. 3PPACh. 19.4 - Prob. 3PPBCh. 19.4 - Prob. 3PPCCh. 19.4 - Prob. 19.4.1SRCh. 19.4 - Prob. 19.4.2SRCh. 19.4 - Prob. 19.4.3SRCh. 19.4 - Prob. 19.4.4SRCh. 19.4 - Prob. 19.4.5SRCh. 19.5 - Prob. 19.4WECh. 19.5 - Prob. 4PPACh. 19.5 - Prob. 4PPBCh. 19.5 - Prob. 4PPCCh. 19.5 - Prob. 19.5WECh. 19.5 - Prob. 5PPACh. 19.5 - Prob. 5PPBCh. 19.5 - Prob. 5PPCCh. 19.5 - Prob. 19.6WECh. 19.5 - Prob. 6PPACh. 19.5 - Calculate the rate constant for the first-order...Ch. 19.5 - Prob. 6PPCCh. 19.5 - Prob. 19.7WECh. 19.5 - The reaction 2A B is second order in A with a rate...Ch. 19.5 - Prob. 7PPBCh. 19.5 - Prob. 7PPCCh. 19.5 - Prob. 19.5.1SRCh. 19.5 - Prob. 19.5.2SRCh. 19.5 - Prob. 19.5.3SRCh. 19.5 - Prob. 19.5.4SRCh. 19.6 - Prob. 19.8WECh. 19.6 - Prob. 8PPACh. 19.6 - Prob. 8PPBCh. 19.6 - Prob. 8PPCCh. 19.6 - Prob. 19.9WECh. 19.6 - Prob. 9PPACh. 19.6 - Prob. 9PPBCh. 19.6 - Prob. 9PPCCh. 19.6 - Prob. 19.10WECh. 19.6 - Prob. 10PPACh. 19.6 - Prob. 10PPBCh. 19.6 - Prob. 10PPCCh. 19.6 - Prob. 19.6.1SRCh. 19.6 - Prob. 19.6.2SRCh. 19.7 - Prob. 19.11WECh. 19.7 - Prob. 11PPACh. 19.7 - Prob. 11PPBCh. 19.7 - Prob. 11PPCCh. 19.7 - Consider the gas-phase reaction of nitric oxide...Ch. 19.7 - Prob. 12PPACh. 19.7 - Prob. 12PPBCh. 19.7 - Prob. 12PPCCh. 19.7 - Prob. 19.7.1SRCh. 19.7 - Prob. 19.7.2SRCh. 19.7 - Prob. 19.7.3SRCh. 19.7 - Prob. 19.7.4SRCh. 19 - The rate of a reaction in which the reactant...Ch. 19 - The rate of a reaction in which the reactant...Ch. 19 - The rate of a reaction in which the reactant...Ch. 19 - Increasing the temperature of a reaction increases...Ch. 19 - Define activation energy. 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