Its weight causes it to accelerate. That is in simple terms. When an object falls to the ground, it still has mass, it still has weight, and it has constant forces acting upon it, such as gravity.
When an object is dropped, it falls towards the ground due to the force of gravity acting on it. The object accelerates as it falls until it reaches the ground or another surface, where it comes to a stop.
When an object falls, it accelerates due to gravity pulling it downwards. As it falls, the object's potential energy is converted into kinetic energy, increasing its speed. The object will continue to fall until it reaches the ground or encounters another force that counteracts gravity.
You hold an object; then you release it, and it falls to the ground.You hold an object; then you release it, and it falls to the ground.You hold an object; then you release it, and it falls to the ground.You hold an object; then you release it, and it falls to the ground.
As the object falls towards the ground, its gravitational potential energy decreases and is converted to kinetic energy. This means that the kinetic energy of the object increases as it gets closer to the ground.
As an object falls to the ground, its potential energy decreases while its kinetic energy increases. This is because the object is converting its potential energy (due to its initial height) into kinetic energy (due to its motion). At the point of impact with the ground, all the initial potential energy is converted into kinetic energy.
It falls, accelerating constantly until it hits the ground.
the velocity of the object increases until it hits the ground
When an object is dropped, it falls towards the ground due to the force of gravity acting on it. The object accelerates as it falls until it reaches the ground or another surface, where it comes to a stop.
when an object falls is it reactin to the force of gravity?
When an object falls, it accelerates due to gravity pulling it downwards. As it falls, the object's potential energy is converted into kinetic energy, increasing its speed. The object will continue to fall until it reaches the ground or encounters another force that counteracts gravity.
You hold an object; then you release it, and it falls to the ground.You hold an object; then you release it, and it falls to the ground.You hold an object; then you release it, and it falls to the ground.You hold an object; then you release it, and it falls to the ground.
As the object falls towards the ground, its gravitational potential energy decreases and is converted to kinetic energy. This means that the kinetic energy of the object increases as it gets closer to the ground.
It speeds up
when water falls on a cemented ground the cemented ground can't absorve water much and the water flows away.
It falls to the ground.
As an object falls to the ground, its potential energy decreases while its kinetic energy increases. This is because the object is converting its potential energy (due to its initial height) into kinetic energy (due to its motion). At the point of impact with the ground, all the initial potential energy is converted into kinetic energy.
When an object at a high elevation loses height, its gravitational potential energy decreases as it moves closer to the ground. This potential energy is converted into kinetic energy as the object accelerates due to gravity. The object's speed increases as it falls towards the ground until it reaches the ground or another surface.