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The first Law of Physics says "For every action there is an equal and opposite reaction". They experience exactly the same force.

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Can a bullet knock someone over?

Yes, a bullet can potentially knock someone over with the force of impact. However, there are many variables that can influence the effect of a bullet, such as the caliber of the bullet, the distance it is fired from, and where it strikes the body.


When a gun is firesit recoils why?

Because linear momentum is conserved. Before the shot, the momentum of (gun + bullet) is zero, so it has to be zero after the shot. The bullet gains forward momentum when fired, so the gun must gain reverse momentum in order to maintain the zero sum.


When a rifle is fired how does the size of the force of the rifle on the bullet compare with the force of the bullet on the rifle how does the acceleration of the rifle compare with that of the bullet?

The force of the rifle on the bullet and the force of the bullet on the rifle are equal in magnitude but opposite in direction, according to Newton's third law of motion. However, the mass of the rifle is much larger than the mass of the bullet, so the acceleration of the rifle is much smaller compared to the acceleration of the bullet.


Which property of matter is a measure of gravitational force?

Mass is a measure of the amount of matter in an object and is directly related to the gravitational force that object experiences. The greater the mass of an object, the greater the gravitational force it exerts or experiences.


Why action and reaction and the case when Bullet is fired from the gun?

When a bullet is fired from a gun, the gun exerts a force on the bullet, propelling it forward. Simultaneously, an equal and opposite force is exerted by the bullet on the gun, causing recoil. This is an example of Newton's third law of motion, which states that for every action, there is an equal and opposite reaction.

Related Questions

Why does a rifle give backward kick on firing a bullet?

A rifle experiences backward kick, or recoil, when a bullet is fired due to Newton's third law of motion, which states that for every action, there is an equal and opposite reaction. When the bullet is propelled forward out of the barrel, the rifle experiences an equal force pushing backward. This recoil results from the rapid expulsion of gas and the mass of the bullet moving forward, leading to the rifle moving backward in response. The amount of recoil is influenced by the bullet's mass and the velocity at which it is fired.


Can a bullet knock someone over?

Yes, a bullet can potentially knock someone over with the force of impact. However, there are many variables that can influence the effect of a bullet, such as the caliber of the bullet, the distance it is fired from, and where it strikes the body.


What is an example of an action and reaction force working together?

the recoil of a bullet fired from a gun


When a gun is firesit recoils why?

Because linear momentum is conserved. Before the shot, the momentum of (gun + bullet) is zero, so it has to be zero after the shot. The bullet gains forward momentum when fired, so the gun must gain reverse momentum in order to maintain the zero sum.


When a rifle is fired how does the size of the force of the rifle on the bullet compare with the force of the bullet on the rifle how does the acceleration of the rifle compare with that of the bullet?

The force of the rifle on the bullet and the force of the bullet on the rifle are equal in magnitude but opposite in direction, according to Newton's third law of motion. However, the mass of the rifle is much larger than the mass of the bullet, so the acceleration of the rifle is much smaller compared to the acceleration of the bullet.


Why a gun is fired it recoils. Why?

When a gun is fired, the explosion of gunpowder generates a high-pressure gas that propels the bullet forward. According to Newton's third law of motion, for every action, there is an equal and opposite reaction. Therefore, as the bullet is pushed forward out of the barrel, the gun experiences an equal force in the opposite direction, resulting in recoil. This recoil is the gun's way of balancing the momentum created by the bullet's forward motion.


What is an example of an action reaction forces?

The recoil of a bullet being fired from a gun is a good example, the action force is the gun pushing the bullet away from the gun and the reaction force is the bullet pushing back against the gun (recoil).


Which property of matter is a measure of gravitational force?

Mass is a measure of the amount of matter in an object and is directly related to the gravitational force that object experiences. The greater the mass of an object, the greater the gravitational force it exerts or experiences.


Why the gun leans backward when the bullet fire from the gun?

It's the recoil from the force of the bullet being fired. The gun powder pushes the bullet forward and also equally pushes the gun back into your hand.


Why action and reaction and the case when Bullet is fired from the gun?

When a bullet is fired from a gun, the gun exerts a force on the bullet, propelling it forward. Simultaneously, an equal and opposite force is exerted by the bullet on the gun, causing recoil. This is an example of Newton's third law of motion, which states that for every action, there is an equal and opposite reaction.


A rifle is fired and you are able to measure both the muzzle velocity of the bullet as well as the recoil velocity of rifle how do you explain the fact that the forward velocity of the bullet is great?

The force exerted on the bullet and the recoil force against the rifleman, are equal to each other (for every action there is an equal and opposite reaction). The bullet has a very small mass, and the rifle/rifleman possess a large mass, force is equal to one half mass times velocity squared, F=m/2*v^2. So velocity of the bullet is the square root of twice force divided by mass, small mass equals large velocity. Another way of looking at this problem is to invoke the law of the conservation of momentum: mass(bullet)*muzzle_velocity(bullet) = mass(rifle)*recoil_velocity(rifle). This is an approximation that neglects the momentum carried away the propellant (both spent and unburned) that exits the muzzle after the bullet.


When a rifle is fired it recoils as the bullet is set in motion the bullet is ideally acquire equal?

And opposite momentum. Say bullet muzzle velocity = 15 000 metres per second Say bullet mass = 0.02 kilogram (20 grams) Say rifle mass = 3 kilogram Then > Bullet momentum = 0.02 * 15 000 = 300 kg - m/s Presume Rifle momentum the same , then 300 = 3 * ? ? = 100 metres per second