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Interpretation:
For each segment of graph, type of decay and changes in atomic and mass number is to be determined.
Concept introduction:
In a nuclear reaction, unstable nuclide disintegrates into stable nuclide with emission of various radiations spontaneously. It is called radioactivity of nucleus. Emission of rays like alpha, beta and gamma rays occur in the process which changes the identity of nucleus.
During a nuclear change, an element undergoes change in its
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Answer to Problem 88A
Segment A indicates Alpha decay in which element with Z equal to 90 changes to 88 and A changes from 232 to 228.
Segment B indicates beta decay in which element with Z equal to 88 changes to 89 and A remains unchanged.
Segment C indicates beta decay in which element with Z equal to 89 changes to 90 and A remains unchanged.
Segment D indicates Alpha decay in which element with Z equal to 90 changes to 88 and A changes from 228 to 224.
Explanation of Solution
Segment A of the graph indicates Alpha decay as it consists of change in atomic number (Z) by 2 and mass number (A) by 4. This means
Segment B of the graph indicates beta decay as it consists of only change in atomic number (Z) by 1. This means
Segment C of the graph indicates beta decay again as it consists of only change in atomic number (Z) by 1. This means
Segment D of the graph indicates Alpha decay as it consists of change in atomic number (Z) by 2 and mass number (A) by 4. This means
Segment A indicates Alpha decay in which element with Z equal to 90 changes to 88 and A changes from 232 to 228.
Segment B indicates beta decay in which element with Z equal to 88 changes to 89 and A remains unchanged.
Segment C indicates beta decay in which element with Z equal to 89 changes to 90 and A remains unchanged.
Segment D indicates Alpha decay in which element with Z equal to 90 changes to 88 and A changes from 228 to 224.
Chapter 24 Solutions
Glencoe Chemistry: Matter and Change, Student Edition
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