General Physics, 2nd Edition
General Physics, 2nd Edition
2nd Edition
ISBN: 9780471522782
Author: Morton M. Sternheim
Publisher: WILEY
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Chapter 31, Problem 51E

(a)

To determine

Energy absorbed by child in a year.

(a)

Expert Solution
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Answer to Problem 51E

The child absorbs energy 0.617J in a year.

Explanation of Solution

Write the expression of number of gamma rays N emitted in one year

  N=a(1year)        (I)

Here, a is source activity.

Write the expression of energy E absorbed by child

  E=pNe        (II)

Here, p is fraction of gamma rays absorbed and e is energy of gamma rays.

Conclusion:

Substitute 10microcurie for a in expression (I).

  N=(10microcurie(1curie106microcurie)(3.70×1010s11curie))(1year(3.15×107s1year))=1.17×1013

Substitute (1/2) for p, 0.66MeV for e and 1.17×1013 for N in expression (II).

  E=(12)(1.17×1013)(0.66MeV(1.6×1013J1MeV))=0.617J

Thus, the child absorbs energy 0.617J in a year.

(b)

To determine

Absorbed dose in a year in rads.

(b)

Expert Solution
Check Mark

Answer to Problem 51E

The absorbed dose in a year is 3.08rad.

Explanation of Solution

Mass of child is 20kg.

Write the expression of absorbed dose A in one year in rads

  A=Em(1rad0.01Jkg1)        (III)

Here, m is mass of child.

Conclusion:

Substitute 0.617J for E and 20kg for m in expression (III).

  A=(0.617J)(20kg)(1rad0.01Jkg1)=3.08rad

Thus, the absorbed dose in a year is 3.08rad.

(c)

To determine

Ratio of biologically equivalent dose to average natural annual dose.

(c)

Expert Solution
Check Mark

Answer to Problem 51E

The ratio of biologically equivalent dose to average natural annual dose is 28.

Explanation of Solution

Write the expression of biologically equivalent dose B per annum

  B=AQ        (IV)

Here, Q is the quality factor.

Write the expression of ratio R of biologically equivalent dose to natural dose per annum

  R=Bn        (V)

Here, n is natural dose per year.

Conclusion:

Substitute 3.08rad for A and 0.8 for Q in expression (IV).

  B=(3.08rad)(0.8)=2.46rem

Substitute 2.46rem for B and 88mrem for n in expression (V).

  R=(2.46rem)(88mrem(1rem103mrem))=28

Thus, the ratio of biologically equivalent dose to average natural annual dose is 28.

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