Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 20, Problem 5QP
Interpretation Introduction

Interpretation:

The unknown atom, X, is to be identified in the given nuclear reactions.

Concept Introduction:

In a balanced radioactive decay:

Reactant mass number = Product mass number

Reactant atomic number = Product atomic number

In a balanced radioactive decay, the subscript on the individual particles represents the atomic number, while the superscript represents the atomic mass.

Expert Solution & Answer
Check Mark

Answer to Problem 5QP

Solution:

(a)

The term X is (b) (c)(d) (e) (f) 11(g) (h) 23(i)(j)Na.(k) (l)

(m)

The term X is (n) (o)(p) (q) 1(r) 1(s)(t)H.(u) (v)

(w)

The term X is (x) (y)(z) (aa) (bb)(cc)1(dd)(ee)(ff) 0(gg)(hh)n(ii) (jj).

(kk)

The term X is (ll) (mm)(nn) (oo) (pp) 26(qq) (rr) 56(ss)(tt)Fe(uu) (vv).

(ww)

The term X is (xx) (yy)(zz) (aaa) (bbb) 1(ccc) 0(ddd)(eee)β.(fff) (ggg)

Explanation of Solution

a) 1226Mg +11α+X.

The atomic mass and atomic number of α are 4 and 2 , respectively.

Now, apply the balancing rules as follows:

Reactant mass number = Product mass number

And

Reactant atomic number = Product atomic number

On the left side of the reaction, the sum of atomic numbers is calculated as follows:

(12) + (1)=13

On the right side of the reaction, the sum of atomic numbers is (2)(atomic number of X).

Thus, the atomic number of X is as follows:

(13)(2)=11.

On the left side of the reaction, the sum of mass numbers is as follows:

(26)+(1) = 27

On the right side of the reaction, the sum of mass numbers is (4)+(mass number of X).

Thus, the mass number of X is as follows:

(27)(4)=23

So, X will be 1123Na.

b) 2759Co+12H2760Co + X

Now, apply the balancing rules as follows:

Reactant mass number = Product mass number

And

Reactant atomic number = Product atomic number

On the left side of the reaction, the sum of atomic numbers is calculated as follows:

(27)+(1)=28

On the right side of the reaction, the sum of atomic numbers is (27) + (atomic number of X).

Thus, the atomic number of X is calculated as follows:

(28)(27)=1

Similarly,

On the left side of the reaction, the sum of mass numbers is calculated as follows:

(59)+( 2)= 61

On the right side of the reaction, the sum of mass numbers is (60)+(mass number of X).

Thus, the mass number of X is calculated as follows:

(61)(60)=1

So, X will be 11H.

c) 23592U + 10n 3694Kr+56139Ba + 3X

Now, apply the balancing rules as follows:

Reactant mass number = Product mass number

And

Reactant atomic number = Product atomic number

On the left side of the reaction, the sum of atomic numbers is as follows:

(92) + (0) = 92

On the right side of the reaction, the sum of atomic numbers is 36 + 56+ 3×(atomic number of X).

Thus, the atomic number of X is calculated as follows:

(92)(36 + 56)3=0

Similarly,

On the left side of the reaction, the sum of mass numbers is calculated as follows:

(235+1)=236

On the right side of the reaction, the sum of mass numbers is 94 + 139 + 3×(mass number of X).

Thus, the mass number of X is calculated as follows:

((236)(94 + 139)3)=1

So, X will be 10n.

d) 2453Cr +24α 01n+X.

Now, apply the balancing rules as follows:

Reactant mass number = Product mass number

And

Reactant atomic number = Product atomic number

On the left side of the reaction, the sum of atomic numbers is calculated as follows:

(24)+(2)=26

On the right side of the reaction, the sum of atomic numbers is (0)+(atomic number of X).

Thus, the atomic number of X is as follows:

(26)(0)=26

Similarly,

On the left side of the reaction, the sum of mass numbers is calculated as follows:

(53)+(4)=57

On the right side of the reaction, the sum of mass numbers is (1)+(mass number of X).

Thus, the mass number of X is as follows:

(57)(1)=56

So, X will be 2656Fe.

e) 820920F+X.

Now, apply the balancing rules as:

Reactant mass number = Product mass number

And

Reactant atomic number = Product atomic number

On the left side of the reaction, the sum of atomic numbers is 8.

On the right side of the reaction, the sum of atomic numbers is (9)+(atomic number of X).

Thus, atomic number of X is calculated as follows:

(8)(9)=1

Similarly,

On the left side of the reaction, the sum of mass numbers is 20.

On the right side of the reaction, the sum of mass numbers is (20)+(mass number of X).

Thus, the mass number of X is as follows:

(20)(20)=0

So, X will be 10β.

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