Answer: The correct answer is Option A.
Step-by-step explanation:
For the given options:
Alpha decay is defined as the process in which alpha particle is emitted. In this process, a heavier nuclei decays into a lighter nuclei. The alpha particle released carries a mass of 4 units.
![_Z^A\textrm{X}\rightarrow _(Z-2)^(A-4)\textrm{Y}+_2^4\alpha](https://img.qammunity.org/2020/formulas/chemistry/high-school/em3ji94h9kmmxr13lorf6oy8np31oldr6n.png)
Beta decay is defined as the process in which beta particle is emitted. In this process, a neutron gets converted to a proton and an electron. The beta particle does not have any mass.
![_Z^A\textrm{X}\rightarrow _(Z+1)^A\textrm{Y}+_(-1)^0\beta](https://img.qammunity.org/2020/formulas/chemistry/middle-school/xra4h83wc9g8m6mnyjkdu6zsvpk9ti7p7b.png)
Gamma decay is defined as the process in which an unstable nuclei gives off excess energy by a spontaneous electromagnetic process and thus releases
. These radiations does not have any mass.
![_Z^A\textrm{X}^*\rightarrow _Z^A\textrm{X}+_0^0\gamma](https://img.qammunity.org/2020/formulas/chemistry/high-school/9gwdvzote6bk70m9wlgbz07cd2s717ijf6.png)
Nuclear reactions are defined as the reactions in which change of nucleus takes place.
Hence, the correct answer is Option A.