Kinetic Energy increases as velocity increases. Kinetic Energy = 1/2 * Mass * Velocity2
You have to know what velocity means to answer this. So the correct answer is S h i t i for get bye
it stops accelerating at terminal velocity due to the air
Air masses
It is dissipated in making physical changes to the rock layers, and to the ground surface, objects, and buildings. Some is released as thermal energy.
Particles are small pieces of matter. Depending on the context, it may refer to pieces of dust, to atoms or molecules, or to subatomic particles such as protons, electrons, quarks, etc.
When an object's velocity doubles, its kinetic energy increases by a factor of four. This relationship is described by the kinetic energy equation, which states that kinetic energy is directly proportional to the square of an object's velocity.
kinetic energy, K.E = 1/2 mv^2 that is, it is directly proportional to mass, assuming velocity to be constant and is directly proportional to square of velocity assuming mass to be constant.
The two factors that determine an object's kinetic energy are its mass and its velocity. The kinetic energy of an object increases with an increase in either mass or velocity, as kinetic energy is directly proportional to both mass and the square of velocity.
The amount of kinetic energy an object has depends on its mass and its velocity. The kinetic energy of an object increases with both its mass and its velocity.
Kinetic energy is related to an object's mass and its velocity. The formula for kinetic energy is KE = 0.5 * mass * velocity^2. This means that kinetic energy increases with both increasing mass and increasing velocity of an object.
When a body is supported at a height, it has potential energy. When it is released, it will start to fall. As the downward velocity increases, so kinetic energy increases. The potential energy is reduced as the height of the body decreases.
Two objects can have the same amount of kinetic energy if they have the same mass and velocity. Kinetic energy is given by the formula KE = 0.5 * mass * velocity^2, so if both objects have the same mass and velocity, they will have the same kinetic energy.
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a moving objects momentum
Yes, an object's momentum is directly proportional to its velocity. Momentum is defined as the product of an object's mass and velocity, so as velocity increases, momentum increases proportionally.
The energy due to the motion of objects is called kinetic energy. It depends on the mass and velocity of the object, given by the formula KE = 0.5 * mass * velocity^2.
The highest kinetic energy is typically observed in objects with large mass and high velocity. In a given scenario, an object with the highest velocity would have the highest kinetic energy.