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QUESTION IMAGE

complete the nuclear equation and determine the type of decay that is o…

Question

complete the nuclear equation and determine the type of decay that is occurring in this reaction.

Explanation:

Step1: Determine the mass number and atomic number of the missing particle

The mass number of \(^{226}_{88}\text{Ra}\) is \(226\), and the mass number of \(^{222}_{86}\text{Rn}\) is \(222\). So the mass number of the missing particle is \(226 - 222=4\).
The atomic number of \(^{226}_{88}\text{Ra}\) is \(88\), and the atomic number of \(^{222}_{86}\text{Rn}\) is \(86\). So the atomic number of the missing particle is \(88 - 86 = 2\).

Step2: Identify the particle

A particle with mass number \(4\) and atomic number \(2\) is an alpha particle (\(^{4}_{2}\text{He}\)).

Step3: Determine the type of decay

Since an alpha particle (\(^{4}_{2}\text{He}\)) is emitted, this is alpha decay.

Answer:

The completed nuclear equation is \(^{226}_{88}\text{Ra}\to^{222}_{86}\text{Rn}+^{4}_{2}\text{He}\), and the type of decay is alpha decay.