QuestionJuly 30, 2025

Part A Predict whether each nuclide is more likely to decay via beta decay or positron emission. Drag the appropriate items to their respective bins. square disappointed square disappointed

Part A Predict whether each nuclide is more likely to decay via beta decay or positron emission. Drag the appropriate items to their respective bins. square disappointed square disappointed
Part A
Predict whether each nuclide is more likely to decay via beta decay or positron emission.
Drag the appropriate items to their respective bins.
square 
disappointed
square 
disappointed

Solution
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Answer

Beta Decay Bin: [Nuclides with high neutron-to-proton ratio] ### Positron Emission Bin: [Nuclides with low neutron-to-proton ratio] Explanation 1. Determine Neutron-to-Proton Ratio Calculate the neutron-to-proton ratio for each nuclide. Nuclides with a high neutron-to-proton ratio are likely to undergo beta decay, while those with a low ratio may undergo positron emission. 2. Compare with Stability Line Compare the neutron-to-proton ratio with the stability line (N/Z ratio). If above the line, beta decay is more probable; if below, positron emission is likely. 3. Assign Decay Type Based on the comparison, assign each nuclide to either beta decay or positron emission bin.

Explanation

1. Determine Neutron-to-Proton Ratio<br /> Calculate the neutron-to-proton ratio for each nuclide. Nuclides with a high neutron-to-proton ratio are likely to undergo beta decay, while those with a low ratio may undergo positron emission.<br /><br />2. Compare with Stability Line<br /> Compare the neutron-to-proton ratio with the stability line (N/Z ratio). If above the line, beta decay is more probable; if below, positron emission is likely.<br /><br />3. Assign Decay Type<br /> Based on the comparison, assign each nuclide to either beta decay or positron emission bin.
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