In the aftermath of the Big Bang, the first fundamental force to separate from the others was gravity. As the universe expanded and cooled, the strong and weak nuclear forces, as well as electromagnetism, remained unified at extremely high energy levels. It wasn't until the universe cooled sufficiently that these forces began to differentiate, with gravity becoming distinct from the other three fundamental forces. This separation played a crucial role in the evolution of the universe.
The strongest of the four fundamental forces is the strong nuclear force, which is responsible for holding the nucleus of an atom together. It is the strongest force at short distances within the nucleus.
The fundamental force that binds the nucleus of atoms together is the strong nuclear force. This force acts between protons and neutrons, overcoming the electromagnetic repulsion between positively charged protons to hold the nucleus intact. It is the strongest of the four fundamental forces but operates over a very short range, typically only effective at the scale of atomic nuclei.
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.
The attractive force between two point charges decreases with the square of the distance between them. So, if the distance is doubled (from 12cm to 24cm), the force will decrease by a factor of 4. Therefore, at a separation of 24cm, the attractive force will be 5N.
Many scientists think, several believe, and others conjecture, that it was the force of gravity.
There are four "fundamental forces": the strong force, the weak force, the electromagnetic forces, and gravity. Others might be discovered in the future, but until then, anything else is not a fundamental force.
Gravitational force between Earth - Moon - Sun is the fundamental force behind the tidal motion.
Gravitational force is the weakest fundamental force in nature. It is significantly weaker than the strong nuclear force, weak nuclear force, and electromagnetic force.
Fundamental forces are the four fundamental interactions in nature (gravity, electromagnetism, strong nuclear force, and weak nuclear force) that govern particle interactions at a fundamental level. Non-fundamental forces are derived from these fundamental forces, such as friction or tension, that arise from interactions at a macroscopic level.
The four fundamental forces of the universe—gravity, electromagnetism, the weak nuclear force, and the strong nuclear force—are thought to have emerged shortly after the Big Bang, during a period known as cosmic inflation, which occurred within the first microsecond. As the universe expanded and cooled, these forces separated from a unified state, with gravity becoming distinct first, followed by the others as the universe continued to evolve. This process played a crucial role in the formation of matter and the large-scale structure of the universe.
The electroweak force is the unification of the electromagnetic force and the weak nuclear force, two of the four fundamental forces in nature.
The fundamental consideration to examine when organizing a force is what is the purpose of the force. Other things to consider is experience and mobility.
Air resistance is not a fundamental force like gravity, magnetism, and electricity. It is a type of frictional force that occurs when an object moves through the air and affects the motion of the object.
The fundamental considerations to examine when task organizing a force are: experience, equipage, sustainability, and mobility.
Mass is a fundamental unit. Force is fundamental. Do you see a problem with this: Force = mass * accelation, or Mass = Force / acceleration Fundamental quantities are related to each other. There is no contradition to write an equation relating them to one another. An ampere can be defined as 1A = 1C/second.
physical
the non fundamental forces are Tension,Torque,Elastic,Normal,Gravity,Friction.