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Introductory Chemistry: A Foundati...

9th Edition
Steven S. Zumdahl + 1 other
ISBN: 9781337399425

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BuyFindarrow_forward

Introductory Chemistry: A Foundati...

9th Edition
Steven S. Zumdahl + 1 other
ISBN: 9781337399425
Textbook Problem
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. Complete each of the following nuclear equations by supplying the missing particle.

a. A 89 210 c H 2 4 e + ?    b. I 53 131 X 54 131 e + ?    c. B 35 88 r B 35 87 r + ?

Interpretation Introduction

(a)

Interpretation:

Interpret and complete the following reaction.

89Ac210   2He4+ x.

Concept Introduction:

The decaying of an atom takes place by three type of decay such as alpha decay, beta decay, gama decay.

In alpha decay, an alpha particle with mass 4m and electron 2e removed from nuclide while in beta decay two type of decay are possible beta (+) and beta (-). In gamma decay, nuclide will remain same to the original one.

Explanation

Alpha particle decaying of Ac results in formation of Fr with proton 87 as follows:

89Ac210  

Interpretation Introduction

(b)

Interpretation:

Interpret and complete the following reaction.

53I131    54Xe131+ x.

Concept Introduction:

The decaying of an atom takes place by three type of decay such as alpha decay, beta decay, gama decay.

In alpha decay, an alpha particle with mass 4m and electron 2e removed from nuclide while in beta decay two type of decay are possible beta (+) and beta (-). In gamma decay, nuclide will remain same to the original one.

Interpretation Introduction

(c)

Interpretation:

Interpret and complete the following reaction.

35Br88   35Br87+ x.

Concept Introduction:

The decaying of an atom takes place by three type of decay such as alpha decay, beta decay, gama decay.

In alpha decay, an alpha particle with mass 4m and electron 2e removed from nuclide while in beta decay two type of decay are possible beta (+) and beta (-). In gamma decay, nuclide will remain same to the original one.

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