If by radioactive you mean the decay of atoms, it would be the residual strong force The residual strong force has an effective range of 10-15 meters and when the nucleus of an atom extends beyond this the nucleus becomes unstable; the force between the protons is unable to counteract the electromagnetic force.
If you refer to the decay of particles then it is the weak force.
The weak force is one of the four fundamental forces in nature, responsible for certain types of radioactive decay and interactions between subatomic particles. It is involved in the process of transforming one type of subatomic particle into another, such as in beta decay. The weak force is characterized by its short range compared to the other fundamental forces.
The four fundamental forces are gravity, electromagnetism, the weak nuclear force, and the strong nuclear force. Gravity is responsible for pulling objects towards each other, electromagnetism governs the interactions between electrically charged particles, the weak nuclear force is involved in radioactive decay, and the strong nuclear force binds protons and neutrons together in atomic nuclei.
The weak nuclear force is one of the four fundamental forces in physics, responsible for certain types of radioactive decay. It influences the behavior of subatomic particles by causing them to change into different particles through processes like beta decay.
A theoretical physicist is the type of scientist that researches the very basics of energy and matter, as well as the fundamental forces of nature. They use mathematical models and frameworks to understand the behavior of particles and forces at the most fundamental level.
Fundamental forces, such as gravity, electromagnetism, nuclear forces, and the weak force, govern the interactions between particles in the universe. These forces dictate how particles move, interact, and form structures, such as stars, galaxies, and even the universe itself. Understanding these forces is crucial in explaining the behavior and evolution of the universe on both small and large scales.
The weak force is one of the four fundamental forces in nature, responsible for certain types of radioactive decay and interactions between subatomic particles. It is involved in the process of transforming one type of subatomic particle into another, such as in beta decay. The weak force is characterized by its short range compared to the other fundamental forces.
The four fundamental forces are gravity, electromagnetism, the weak nuclear force, and the strong nuclear force. Gravity is responsible for pulling objects towards each other, electromagnetism governs the interactions between electrically charged particles, the weak nuclear force is involved in radioactive decay, and the strong nuclear force binds protons and neutrons together in atomic nuclei.
The weak nuclear force is one of the four fundamental forces in physics, responsible for certain types of radioactive decay. It influences the behavior of subatomic particles by causing them to change into different particles through processes like beta decay.
A theoretical physicist is the type of scientist that researches the very basics of energy and matter, as well as the fundamental forces of nature. They use mathematical models and frameworks to understand the behavior of particles and forces at the most fundamental level.
The weak nuclear force is considered the weakest fundamental force in nature. It is responsible for the radioactive decay of subatomic particles and has a very short range compared to the other fundamental forces.
Fundamental forces, such as gravity, electromagnetism, nuclear forces, and the weak force, govern the interactions between particles in the universe. These forces dictate how particles move, interact, and form structures, such as stars, galaxies, and even the universe itself. Understanding these forces is crucial in explaining the behavior and evolution of the universe on both small and large scales.
A theoretical physicist studies the very basic principles of energy, matter, and the fundamental forces of nature. Their work involves developing and testing theories to explain the behavior of particles and the interactions between them at the most fundamental level.
The four fundamental forces are gravity, electromagnetism, the weak nuclear force, and the strong nuclear force. Gravity is responsible for the attraction between massive objects, electromagnetism governs interactions between charged particles, the weak nuclear force is involved in radioactive decay, and the strong nuclear force holds atomic nuclei together.
The four fundamental forces in nature are gravity, electromagnetism, the weak nuclear force, and the strong nuclear force. Gravity is responsible for the attraction between objects with mass, electromagnetism governs interactions between charged particles, the weak nuclear force is involved in radioactive decay, and the strong nuclear force holds atomic nuclei together.
Strong forces and electrical forces are similar in that they both act at a distance between particles and are responsible for holding atoms and particles together. They are both fundamental forces in nature that play a critical role in the structure and behavior of matter.
The four fundamental forces of nature are gravity, electromagnetism, the weak nuclear force, and the strong nuclear force. Gravity is responsible for the attraction between objects with mass, electromagnetism governs the interactions between charged particles, the weak nuclear force is involved in certain forms of radioactive decay, and the strong nuclear force holds atomic nuclei together.
All elements after Uranium (U) are radioactive. Much of that is due to the fact that they are so large and unstable, that decay causes more stability. This description ignores complex quantum mechanics such as the weak force, one of the four fundamental forces, driving radioactive decay.