Most of the kinetic energy will have turned into potential energy - all of it, if there is no friction.
Most of the kinetic energy will have turned into potential energy - all of it, if there is no friction.
Most of the kinetic energy will have turned into potential energy - all of it, if there is no friction.
Most of the kinetic energy will have turned into potential energy - all of it, if there is no friction.
Kinetic energy equals potential energy in a system when the object is at its highest point, such as when it reaches the peak of its motion.
When the stone reaches its highest point, its vertical velocity is zero and its kinetic energy is at a minimum. At this point, all its initial kinetic energy has been converted into potential energy due to the force of gravity acting on it.
When ball is in the hand, it possesses internal energy. We give it kinetic energy when we throw it up and its kinetic energy decreases as it gains height.The kinetic energy turns to gravitational potential energy which reaches its maximum when it reaches its highest point. At that point the ball stops and then it falls.Its gravitational energy turns to kinetic energy as it falls. When it falls, its some energy turns to heat energy.When the balls hits the ground sound energy is produced and heat is given. The final energy which the body possesses is internal energy.
The ball has its greatest kinetic energy at the moment it is released or thrown, just before it reaches its peak height. This is because it has the highest velocity at this point, which is a key factor in determining an object's kinetic energy.
The kinetic energy of the ball is at its maximum when it is initially thrown, as it has the highest speed at that point. The gravitational potential energy of the ball is at its maximum when the ball reaches its highest point in the throw, where its height above the ground is greatest.
Kinetic energy equals potential energy in a system when the object is at its highest point, such as when it reaches the peak of its motion.
When an object - rocket or otherwise - rises, its kinetic energy gets converted to gravitational potential energy. At its highest point, if it rises directly upwards, all the kinetic energy will be converted to gravitational potential energy. However, its movement may also have a sideways component; in that case, not all the kinetic energy is converted to potential energy.
When the stone reaches its highest point, its vertical velocity is zero and its kinetic energy is at a minimum. At this point, all its initial kinetic energy has been converted into potential energy due to the force of gravity acting on it.
When ball is in the hand, it possesses internal energy. We give it kinetic energy when we throw it up and its kinetic energy decreases as it gains height.The kinetic energy turns to gravitational potential energy which reaches its maximum when it reaches its highest point. At that point the ball stops and then it falls.Its gravitational energy turns to kinetic energy as it falls. When it falls, its some energy turns to heat energy.When the balls hits the ground sound energy is produced and heat is given. The final energy which the body possesses is internal energy.
When the swing reaches its two highest points, its kinetic energy is zero because it is not moving momentarily, and its potential energy is at its maximum. As the swing moves away from its two highest points, in other words, swings, its potential energy decreases and its kinetic energy increases.
In a rollercoaster, potential [[i believe]] is the highest when it starts, or rises, and vice versa for descreasing kinetic energy. Throwing a basketball in the air, when it reaches it's highest point, it's potential energy is at it's maximum and the kinetic energy is low for a moment until it comes back down
Kinetic Energy is given by,KE = 1/2mv2 So, Kinetic energy is highest when velocity is highest..
the energy turns from kinetic (movement) energy and potential energy into lots of kinetic energy (there is also thermal (heat) and sound energy but they are technically just friction and vibration which are just more types of kinetic energy)
The ball has its greatest kinetic energy at the moment it is released or thrown, just before it reaches its peak height. This is because it has the highest velocity at this point, which is a key factor in determining an object's kinetic energy.
The kinetic energy of the ball is at its maximum when it is initially thrown, as it has the highest speed at that point. The gravitational potential energy of the ball is at its maximum when the ball reaches its highest point in the throw, where its height above the ground is greatest.
When you throw a ball upward, its kinetic energy decreases as it moves against gravity due to the work done by the force of gravity. As the ball reaches its highest point, its kinetic energy is at its minimum while potential energy is at its maximum.
When the ball is thrown, energy is transferred from the person's muscles to the ball, giving it kinetic energy. As the ball reaches the highest height, this kinetic energy is converted into potential energy due to the upward motion against gravity. When the ball falls back down, this potential energy is converted back into kinetic energy as the ball accelerates downward due to gravity.