QUESTION IMAGE
Question
the effect of this decay is that
239 94pu→4 2he + 235 92u
the mass number increases
critical mass is achieved
a neutron is converted to a proton
plutonium is converted to uranium
Step1: Analyze the nuclear reaction
In the given reaction \(^{239}_{94}Pu
ightarrow^{4}_{2}He + ^{235}_{92}U\), we observe the change in the elements.
Step2: Check each option
- Option "the mass number increases": Mass number of \(Pu\) is \(239\), and after decay, sum of mass numbers of \(He\) (\(4\)) and \(U\) (\(235\)) is \(4 + 235=239\). So mass number does not increase.
- Option "a neutron is converted to a proton": In alpha decay (which this is, as \(He\) is emitted), a different process occurs (emission of \(^{4}_{2}He\) nucleus).
- Option "critical mass is achieved": There is no indication in the reaction equation about critical mass.
- Option "plutonium is converted to uranium": The reactant is \(Pu\) (\(^{239}_{94}Pu\)) and one of the products is \(U\) (\(^{235}_{92}U\)).
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plutonium is converted to uranium