The object that has the biggest mass combined with the biggest acceleration. Isaac newton's second law states that the force is equal to the mass multiplied by the acceleration.
Imagine a rhinocerous charging at you. He has a mass of 4000 pounds. Imagine that he is only charging at you at an acceleration of .001m/s2. The force that he is going to impact on you is a force of 4 lb*m/s2.
Imagine a bully in school who is about to punch you. Lets say his hand has a mass of about 1 pound. Now imagine that he is punching you at 5m/s2. The force that he is impacting on you is a force of 5 lb*m/s2.
This may be a hard concept to grasp, but the bully is actually putting more force onto you than the rhinocerous is. The force depends NOT ONLY on the mass but also how fast you are applying that mass to an object.
A solid is where cohesive forces are at maximum.
The force that holds particles of matter together is called the electromagnetic force. This fundamental force is responsible for the attraction between charged particles, such as electrons and protons, which keeps atoms stable. Additionally, the strong nuclear force acts to hold protons and neutrons together in the nucleus of an atom. Together, these forces are essential for the structure and stability of matter.
The solid state of matter contains particles that are held tightly in a rigid structure. The particles in a solid are closely packed together and are not able to move freely, which gives solids their definite shape and volume.
The attractive force between like particles is called cohesion. It is the force that holds similar particles together within a substance.
the Sun.
salt
The solid phase of matter typically has the strongest attractive forces between particles. This is because the particles are closely packed together and have limited freedom of movement, allowing for strong intermolecular interactions.
The force of attraction between two particles of matter due to their mass is known as gravitational force. It is described by Newton's law of universal gravitation, which states that this force is directly proportional to the product of the masses of the particles and inversely proportional to the square of the distance between them.
The state of matter that has the strongest bond is called a solid. Liquids are another state of matter, however, they provide the weakest bond.
A solid is where cohesive forces are at maximum.
The force that holds particles of matter together is called the electromagnetic force. This fundamental force is responsible for the attraction between charged particles, such as electrons and protons, which keeps atoms stable. Additionally, the strong nuclear force acts to hold protons and neutrons together in the nucleus of an atom. Together, these forces are essential for the structure and stability of matter.
the force of attraction between the particles gases is weak force of attraction between the particles in liquid is a bit strong force of attraction between the particles in solid is strongest this is the right answers,,,,,dont worry :)
The gravitational force between any two elementary particles is insignificant; in this sense, it's the weakest force. On the other hand, since gravity is UNIVERSAL and ALWAYS ATTRACTIVE, it's the strongest force on large scales. For example, the electrical and magnetic forces between two galaxies are insignificant, compared to their gravitational force.
The term for the force between charged particles is called electrostatic force. This force is either attractive or repulsive depending on the charges of the particles involved.
electromagnetic force
The force that pulls particles together is called the electromagnetic force. This force is responsible for the attraction between particles with opposite electric charges and the repulsion between particles with like charges.
The strongest man-made force is the Large Hadron Collider (LHC) at CERN, which accelerates particles to nearly the speed of light to create high-energy collisions for studying fundamental particles and forces in the universe.