Yes,
Kinetic Energy is motion. When particles are warmed or heated they move faster, hit harder, and bump into each other more often.
Or for example, friction creates heat when an object rubs against another very quickly. So if the kinetic energy is higher then there is a higher chance of heat production.
A.K.A - Motion
Energy in Motion is Kinetic Energy
Its the same thing.
No. In gases, 'Absolute temperature' is proportionally related to the kinetic energy of the particles. Therefore, increase in temperature results in increase in the kinetic energy of the particles.
no that is not true everybody knows that when something is moving it has k.e , wich means that it has kinetic energy and when is not moving its p.e potential energy so I dont see how acar has the less k.e when its moving the answers is it has the less p.e
Yes, it is true. The average kinetic energy of gas particles is directly proportional to their temperature according to the kinetic theory of gases. So, when the temperature doubles from 100 to 200, the average kinetic energy of the steam particles also doubles.
False. Replication is the process by which DNA is copied, and it does not release energy. An energy-releasing process that does not require oxygen is glycolysis.
Yes, energy is required to move molecules from a high concentration to a low concentration. This process is known as passive transport and it relies on the kinetic energy of the molecules themselves to move across the concentration gradient.
No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.
False. All objects do not have kinetic energy. Kinetic energy is the energy an object possesses due to its motion. Objects at rest do not have kinetic energy.
False. Kinetic energy is related to an object's motion or speed, not its height. Potential energy is related to an object's height, while kinetic energy is related to its motion.
No, potential energy is the energy an object possesses due to its position or conditions, such as gravitational potential energy or elastic potential energy, whereas energy of motion is known as kinetic energy. They are separate forms of energy.
True
False. A stick of unlit dynamite contains potential energy, not kinetic energy. Kinetic energy is the energy of motion, while potential energy is the stored energy an object possesses due to its position or state.
False. Kinetic energy is indeed the energy possessed by a body in motion, not by a stationary object. The energy exhibited by a stationary train would typically be in the form of potential energy, such as gravitational potential energy due to its position on the tracks.
True. As you start sliding down a slide, your potential energy is being converted into kinetic energy, which is the energy of motion.
This is homework so you need to work out the answer for yourself. Here are some facts to help:-Kinetic energy is energy gained by motion.wow, loser who answered above. lol.the answer is false. lets think about this here 4 a minute. kinetic energy is energy gained by motion. that means that kinetic energy allows for motion and movement. so if you put a lot of kinetic energy (motion) into something, its gonna move more, because it has more of this energy rite? like when you push something across a desk. it moves, rite? and if you push it harder, you gave it more kinetic energy, so it moved farther.^^ hope this helped ^^
False. Friction acts to oppose the motion of an object, slowing it down. It creates resistance between surfaces in contact, converting some of the kinetic energy into heat.
No. In gases, 'Absolute temperature' is proportionally related to the kinetic energy of the particles. Therefore, increase in temperature results in increase in the kinetic energy of the particles.
True. When the particles of an object move faster, their kinetic energy increases, which in turn increases the object's thermal energy. This is because thermal energy is a form of kinetic energy associated with the random motion of particles within a substance.