Kinetic energy is dependent on speed and mass. The formula for kinetic energy is (1/2)mv2, where m is mass and v is velocity.
It depends on mass and velocity. ans : it depends on the mass & speed of the moving object. no, it depends on the work & energy.
The kinetic energy of the object depends on its mass and speed. The momentum of the object also depends on its mass and speed. Additionally, the force required to stop or change the direction of the object is influenced by its mass and speed.
The classical (non-relativistic) formula for kinetic energy is: KE = (1/2) mv2 (1/2 times mass times speed squared). So, the kinetic energy depends on the mass and on the speed. (The relativistic formula is slightly different, but also depends on mass and speed, so as far as your question is concerned the exact differences aren't important.)
The object's mass and speed.
Kinetic energy increases with speed because kinetic energy is directly proportional to the square of an object's speed. Time does not have a direct effect on kinetic energy, as kinetic energy depends on an object's mass and speed but not its duration of movement.
The kinetic energy depends on both mass and speed. If either mass or speed increase, the kinetic energy will increase as well.
The kinetic energy of a moving object depends on its mass and its velocity. The formula for kinetic energy is 0.5 x mass x velocity^2. This means that both increasing the mass or the velocity of the object will increase its kinetic energy.
Kinetic energy depends on mass, and speed. Since you can't easily change an object's mass, you would basically change its speed.
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 depends both on the mass and on the speed.
The kinetic energy depends on the object's mass, and on its speed.
Kinetic energy depends on mass and speed. For a given object (whose mass will normally not change much), it will be greatest when the speed is greatest.