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What force is used when kicking a football?

What force is used when kicking a football?

muscular force
A football is kicked with the help of foot muscles. So, the force applied is muscular force.

What is the force called when you kick a ball?

If the ball is on the ground this opposing force is called the frictional force, if the ball is in the air it is called drag. Friction also requires that the player kicks the ball with more force in order to overcome the friction forces acting against it and increase its acceleration.

How do you find acceleration with force and mass?

According to Newton’s second law of motion, the acceleration of an object equals the net force acting on it divided by its mass, or a=Fm. This equation for acceleration can be used to calculate the acceleration of an object when its mass and the net force acting on it are known.

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What forces are in kicking?

The moment the ball leaves the foot, it stops accelerating, and from this point forward only two forces are exerted upon it: the friction with the air, which slows the ball’s motion, and gravity, which pulls it down. As the ball moves, it slows and falls down.

What forces are involved in football?

There are many forces involved in the game of football. These are: Force of Gravity, Normal Force, Force of Friction, and Applied Force. Force of Gravity applies to football when the football is thrown or kicked, when a player jumps in the air to avoid a tackle or catch a ball, and is constantly being applied.

What happens to the ball when you kick it?

When the balls are kicked, the air is compressed. This compressed air pushes out on the ball, resulting in the motion of the ball and the return to it’s regular state. There is more air in the inflated ball, which can’t be compressed as much as the flat ball.

What happen to its speed as the player kicks it?

Its speed will drop gradually, due to friction (a force applied on the ball in the opposite direction to its motion), but the direction of its motion will remain the same. When we kick the ball, the force we apply to it causes it to accelerate from a speed of 0 to a speed of dozens of kilometers per hour.

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How fast does a soccer player kick a ball?

In a game of professional soccer the average penalty kick goes flying towards the goal at a speed of 70 miles per hour. Given where the shot must be made from, that means that the ball can reach the net in less than .

When a soccer player kicks a ball the ball accelerates explain what causes this acceleration in terms of forces?

According to Newton’s Second Law, the force behind the soccer ball equals its mass times acceleration, in the equation F =ma. A hard kick will move the soccer ball farther and faster than a soft kick. The acceleration of the ball depends upon how much force behind the kick.

What is the acceleration of a football?

0.92 m/s2
Acceleration is 0.92 m/s2 for football and 0.94 m/s2 for futsal. The results of the average time, speed and acceleration showed that futsal players are higher than football players.

What is the mass of the football when the player kicked it?

The mass of the football is 0.40 kg. – eNotes.com What acceleration is imparted to a football when the player kicked it with a force of 25 N? The mass of the football is 0.40 kg. Hover for more information. Who are the experts?

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How does mass affect the acceleration of a football?

The kick is an exertion of force onto the football. Thus, according to the formula we just gave, the football will accelerate in inverse proportion to its mass (that is, some of the force will be “dissipated” by its mass and the remainder of the force will accelerate it).

What is the force acting on the ball?

The force acting on the ball is the mass of the ball, 0.4 kg, multi- plied by the acceleration, 3000 meters per second squared, which is 1200 kilograms times meters per second squared.

What is the speed of a soccer ball in seconds?

The ball starts with no speed and ends up at about 30 m/s, in about 0.01 sec- onds. m/s m/s s m . s . The force acting on the ball is the mass of the ball, 0.4 kg, multi- plied by the acceleration, 3000 meters per second squared, which is 1200 kilograms times meters per second squared.