the question is asked in a ambiguous way, i would need more information to answer the question. i would need to know the where the ball is located to know the distance of witch it would travel. Example: if it was in the earths atmosphere it would be one answer, but if it was in space it would be another.
The amount of kinetic energy increases.
The coaster have a large amount of potential energy when it gain height, kinetic energy when it gain speed instead.
Energy in motion refers to the concept of kinetic energy, which is the energy possessed by an object due to its motion. The amount of kinetic energy an object has is directly related to its mass and speed. When an object is in motion, it possesses kinetic energy.
It is direct, and the amount of stream erosion increases, kinetic energy increases also.
The slug can reach a velocity of Mach 7, so the amount of kinetic energy depends on the mass of the slug.
Kinetic and potential energy are a type of energy, not a measurement of distance.
By any source of electrical power moving any object any amount of distance. Because kinetic energy is the ability to move something with a force. So without kinetic energy it would be stored energy called potential energy.
The amount of kinetic energy increases.
The amount of kinetic energy increases.
The coaster have a large amount of potential energy when it gain height, kinetic energy when it gain speed instead.
A fixed amount of water tends to have the least amount of kinetic energy in its solid state, as the molecules are tightly packed and have limited movement. This is why ice has lower kinetic energy compared to liquid water or water vapor.
The amount of kinetic energy depends on the object's mass and its velocity. Kinetic energy increases with both mass and velocity; the greater the mass or speed of an object, the more kinetic energy it possesses.
Following the equation of E(k) = 1/2 m v squared. The kinetic energy is directly proportional to the amount of mass an object has, assuming the velocity is constant. v = s/t Therefore, E(k) = 1/2 m s/t squared. We can conclude that distance itself has no impact on the amount of kinetic energy. However, it is true that a higher displacement per unit time relates to higher kinetic energy.
The amount of kinetic energy in a substance depends on its mass and velocity. The formula to calculate kinetic energy is KE = 1/2 * m * v^2, where KE is the kinetic energy, m is the mass, and v is the velocity of the substance.
A moving car has kinetic energy as it is in motion. Its speed and mass determine the amount of kinetic energy it possesses.
Yes, a rolling ball has kinetic energy due to its motion. The amount of kinetic energy it has depends on its mass and velocity.
As the temperature of a gas decreases, the average kinetic energy of the gas particles also decreases. This is because temperature is a measure of the average kinetic energy of the particles in a substance.