Chemistry & Chemical Reactivity
Chemistry & Chemical Reactivity
9th Edition
ISBN: 9781305176461
Author: Kotz
Publisher: Cengage
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Chapter 25, Problem 20PS

(a)

Interpretation Introduction

Interpretation: Probable mode of decay of manganese-54 and the equation for this radioactive decay has to be given

Concept introduction:

Radioactive decay: It is the process in which a radioactive nucleus loses its energy by the emission of radiations namely, beta particle, alpha particle

Common particles in radioactive decay and nuclear transformations are mentioned below,

    ParticleSymbolProton11Hor11PNeutron01nElectron-10eAlphaparticle24Heor24αBetaparticle-10eor-10βPositron10e

There are various types of nuclear processes. The changes in atomic number and mass number accompanying radioactive decay are mentioned below,

TypeofDecaySymbolchargeMassChangeinatomicnumberChangeinmassnumberBeta-10eor-10β-10+1nonePositron+10e+10-1noneAlpha24Heor24α+24-2-4Gamma00γ00nonenone

(a)

Expert Solution
Check Mark

Explanation of Solution

The radioactive isotope of manganese-54 is transmuted to iron-56 along with the emission of a proton.

The equation for this radioactive decay is given below:

  M2554n+α24H12+F2656e

(b)

Interpretation Introduction

Interpretation: Probable mode of decay of silver-110 and the equation for this radioactive decay has to be given

Concept introduction:

Radioactive decay: It is the process in which a radioactive nucleus loses its energy by the emission of radiations namely, beta particle, alpha particle

Common particles in radioactive decay and nuclear transformations are mentioned below,

    ParticleSymbolProton11Hor11PNeutron01nElectron-10eAlphaparticle24Heor24αBetaparticle-10eor-10βPositron10e

There are various types of nuclear processes. The changes in atomic number and mass number accompanying radioactive decay are mentioned below,

TypeofDecaySymbolchargeMassChangeinatomicnumberChangeinmassnumberBeta-10eor-10β-10+1nonePositron+10e+10-1noneAlpha24Heor24α+24-2-4Gamma00γ00nonenone

(b)

Expert Solution
Check Mark

Explanation of Solution

The radioactive isotope of silver-110 is transmuted to cadmium-110 along with the emission of a beta particle.

The equation for this radioactive decay is given below:

  A47110gC48110d+β10.

(c)

Interpretation Introduction

Interpretation: Probable mode of decay of americium-241 and the equation for this radioactive decay has to be given

Concept introduction:

Radioactive decay: It is the process in which a radioactive nucleus loses its energy by the emission of radiations namely, beta particle, alpha particle

Common particles in radioactive decay and nuclear transformations are mentioned below,

    ParticleSymbolProton11Hor11PNeutron01nElectron-10eAlphaparticle24Heor24αBetaparticle-10eor-10βPositron10e

There are various types of nuclear processes. The changes in atomic number and mass number accompanying radioactive decay are mentioned below,

TypeofDecaySymbolchargeMassChangeinatomicnumberChangeinmassnumberBeta-10eor-10β-10+1nonePositron+10e+10-1noneAlpha24Heor24α+24-2-4Gamma00γ00nonenone

(c)

Expert Solution
Check Mark

Explanation of Solution

The radioactive isotope of americium-241 is transmuted to neptunium-237 along with the emission of an alpha particle.

The equation for this radioactive decay is given below:

  A95241mN93237p+α24.

(d)

Interpretation Introduction

Interpretation: Probable mode of decay of mercury-197m and the equation for this radioactive decay has to be given

Concept introduction:

Radioactive decay: It is the process in which a radioactive nucleus loses its energy by the emission of radiations namely, beta particle, alpha particle

Common particles in radioactive decay and nuclear transformations are mentioned below,

    ParticleSymbolProton11Hor11PNeutron01nElectron-10eAlphaparticle24Heor24αBetaparticle-10eor-10βPositron10e

There are various types of nuclear processes. The changes in atomic number and mass number accompanying radioactive decay are mentioned below,

TypeofDecaySymbolchargeMassChangeinatomicnumberChangeinmassnumberBeta-10eor-10β-10+1nonePositron+10e+10-1noneAlpha24Heor24α+24-2-4Gamma00γ00nonenone

(d)

Expert Solution
Check Mark

Explanation of Solution

The radioactive isotope mercury-197m is first converted to mercury-197. Then the radioactive isotope mercury-197 is transmuted to gold-197.

The equation for this radioactive decay is given below:

  H80197gA79197u.

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Chapter 25 Solutions

Chemistry & Chemical Reactivity

Ch. 25.4 - Prob. 3CYUCh. 25.4 - Prob. 1RCCh. 25.4 - Prob. 2RCCh. 25.5 - Prob. 1CYUCh. 25.5 - Prob. 1RCCh. 25.6 - Prob. 1RCCh. 25.9 - Prob. 1CYUCh. 25.9 - Prob. 1QCh. 25.9 - Prob. 2QCh. 25.9 - Prob. 3QCh. 25.9 - Prob. 4QCh. 25.9 - Prob. 5QCh. 25.9 - Prob. 6QCh. 25.A - Prob. 1QCh. 25.A - Prob. 2QCh. 25.A - Prob. 3QCh. 25.A - Prob. 4QCh. 25 - Prob. 1PSCh. 25 - Prob. 4PSCh. 25 - Prob. 5PSCh. 25 - Prob. 6PSCh. 25 - Prob. 7PSCh. 25 - Prob. 8PSCh. 25 - Prob. 9PSCh. 25 - Prob. 11PSCh. 25 - Prob. 12PSCh. 25 - Prob. 13PSCh. 25 - Prob. 14PSCh. 25 - Prob. 15PSCh. 25 - Prob. 16PSCh. 25 - Prob. 17PSCh. 25 - Prob. 18PSCh. 25 - Prob. 19PSCh. 25 - Prob. 20PSCh. 25 - Prob. 21PSCh. 25 - Prob. 22PSCh. 25 - Prob. 23PSCh. 25 - Prob. 24PSCh. 25 - Prob. 25PSCh. 25 - Prob. 26PSCh. 25 - Prob. 27PSCh. 25 - Prob. 28PSCh. 25 - Prob. 29PSCh. 25 - Prob. 30PSCh. 25 - Prob. 31PSCh. 25 - Prob. 32PSCh. 25 - Prob. 33PSCh. 25 - Prob. 34PSCh. 25 - Prob. 35PSCh. 25 - Prob. 36PSCh. 25 - Prob. 37PSCh. 25 - Prob. 38PSCh. 25 - Prob. 39PSCh. 25 - Prob. 40PSCh. 25 - Prob. 41PSCh. 25 - Prob. 42PSCh. 25 - Prob. 43PSCh. 25 - Prob. 44PSCh. 25 - Prob. 45PSCh. 25 - Some of the reactions explored by Ernest...Ch. 25 - Prob. 47GQCh. 25 - Prob. 48GQCh. 25 - Prob. 49GQCh. 25 - Prob. 50GQCh. 25 - Prob. 51GQCh. 25 - Prob. 52GQCh. 25 - Prob. 53GQCh. 25 - Prob. 54GQCh. 25 - Prob. 55ILCh. 25 - Prob. 56ILCh. 25 - Prob. 57ILCh. 25 - Prob. 58ILCh. 25 - Prob. 59ILCh. 25 - Prob. 60ILCh. 25 - Prob. 61SCQCh. 25 - Prob. 62SCQCh. 25 - Prob. 63SCQCh. 25 - Prob. 64SCQCh. 25 - Prob. 66SCQCh. 25 - Prob. 67SCQCh. 25 - Prob. 68SCQCh. 25 - Prob. 69SCQ
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