Glencoe Physical Science 2012 Student Edition (Glencoe Science) (McGraw-Hill Education)
Glencoe Physical Science 2012 Student Edition (Glencoe Science) (McGraw-Hill Education)
1st Edition
ISBN: 9780078945830
Author: Charles William McLaughlin, Marilyn Thompson, Dinah Zike
Publisher: Glencoe Mcgraw-Hill
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Question
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Chapter 20, Problem 40R

(a)

To determine

To identify: The type of nuclear radiation emitted in given transmutation.

(a)

Expert Solution
Check Mark

Answer to Problem 40R

Alpha particle radiation is emitted in uranium-238 to thorium-234 transmutation.

Explanation of Solution

Introduction:

The process of decaying a nucleus and emitting radiation and energy is called radioactivity. It emits mainly three types of radiations; alpha, beta and gamma radiations which are associated with energy change.

Uranium-238 to thorium-234 transmutation can be written as:

  U92238T90h234+H2e4

As it is shown above, unstable parent nucleus (U92238) decays an alpha particle (H2e4) to produce stable daughter nucleus (T90h234) .

Conclusion:

Thus, alpha particle radiation is emitted in uranium-238 to thorium-234 transmutation.

(b)

To determine

To identify: The type of nuclear radiation emitted in given transmutation.

(b)

Expert Solution
Check Mark

Answer to Problem 40R

Beta particle radiation is emitted in boron-12 to carbon-12 transmutation.

Explanation of Solution

Introduction:

The process of decaying a nucleus and emitting radiation and energy is called radioactivity. It emits mainly three types of radiations; alpha, beta and gamma radiations which are associated with energy change.

Boron-12 to carbon-12 transmutation can be written as:

  B512C612+β-

As it is shown above, unstable parent nucleus (B512) decays an beta particle (β-) to produce stable daughter nucleus (C612) .

Conclusion:

Thus, beta particle radiation is emitted in boron-12 to carbon-12 transmutation.

(c)

To determine

To identify: The type of nuclear radiation emitted in given transmutation.

(c)

Expert Solution
Check Mark

Answer to Problem 40R

No radiation emitted in cesium-130 to cesium-130 transmutation.

Explanation of Solution

Introduction:

The process of decaying a nucleus and emitting radiation and energy is called radioactivity. It emits mainly three types of radiations; alpha, beta and gamma radiations which are associated with energy change.

Cesium-130 to cesium-130 transmutation can be written as:

  C55s130C55s130

As it is shown above, no change in cesium before and after transmutation hence no radiation emitted.

Conclusion:

Thus, no radiation emitted in cesium-130 to cesium-130 transmutation.

(d)

To determine

To identify: The type of nuclear radiation emitted in given transmutation.

(d)

Expert Solution
Check Mark

Answer to Problem 40R

Alpha particle radiation is emitted in radium-226 to radon-222 transmutation.

Explanation of Solution

Introduction:

The process of decaying a nucleus and emitting radiation and energy is called radioactivity. It emits mainly three types of radiations; alpha, beta and gamma radiations which are associated with energy change.

Radium-226 to radon-222 transmutation can be written as:

  R88a226R86n222+H2e4

As it is shown above, unstable parent nucleus (R88a226) decays an alpha particle (H2e4) to produce stable daughter nucleus (R86n222) .

Conclusion:

Thus, alpha particle radiation is emitted in radium-226 to radon-222 transmutation.

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