Respuesta :
Radioactive decay is a spontaneous reaction that is necessary to increase the stability of an element by increasing its neutron-to-proton ratio. It is achieved through nuclear reactions: fission and fusion. These reactions occur by either combining or breaking sub-atomic particles. As a result, it yields new elements. The binding energy of re-orienting the sub-atomic particles of the element has the formula: E = mc², where m is the mass defect and c is the speed of light equal to 300 million meters per second. Mass defect is defined as the difference of the mass of the isotope and the sum of the masses of its sub-atomic particles. For decay, the mass of the isotope is less than the sum of the sub-atomic particles because the rest of the energy is released when the nucleus is formed.
Thus, the answers are:
*E=mc²
*mass defect
Thus, the answers are:
*E=mc²
*mass defect
Electrostatic forces of repulsion e = mc2 is related to radioactive decay.
What is radioactive deccay
Radioactive decay is the process by which an unstable atomic nucleus emit energy due to the presences of ionizing radiation. A material that cobtain unstable nuclei is considered radioactive. Three of the types of decay are alpha decay, beta decay, and gamma decay, all of which emit different particles.
Therefore, Electrostatic forces of repulsion e = mc2 is related to radioactive decay.
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