mass and speed
KE = 1/2mv2, where m is mass in kg, and vis velocity in m/s.
Kinetic energy is the energy an object possesses due to its motion, while potential energy is the energy stored in an object based on its position or configuration. Kinetic energy depends on mass and velocity, while potential energy depends on height, position, or state of compression/expansion.
The gain in kinetic energy can be calculated using the equation: ΔKE = KE_final - KE_initial, where KE is the kinetic energy. Simply subtract the initial kinetic energy from the final kinetic energy to determine the gain.
The temperature of a sample of nitrogen gas is a measure of the molecules' average # activation energy # potential energy # kinetic energy # ionization energy Answer 3 Reason Temperature measures average kinetic energy.
The sum of Kinetic energy, gravitational potential energy and mechanical springs potential energy is defined to be the mechanical energy of a system : Em= Ek + Ug + Uspring Theorically, the mechanical energy of a system is always constant, which means that: Em before= Em after Ek1 + Ug1 + Uspring 1 = Ek2 + Ug2 + Uspring 2 Systems involving mechanical springs are rare, though, so Uspring is normally set equal to zero in the situations where springs are not involved.
Yes, fireworks have kinetic energy when they are being propelled into the air or when they are in motion. However, once they explode and release their energy in the form of heat, light, and sound, their kinetic energy is transformed into other forms of energy.
Any time anything moves, there is kinetic energy involved.
It loses its kinetic energy as it does work against frictional force
It's either chemical energy,gravitational energy,potential energy,or kinetic energy.The correct answer is kinetic energy.
Unless you don't move at all, some kinetic energy will certainly be involved.
The type of energy involved in the motion of a top spinning is kinetic energy.
Kinetic energy is directly involved in moving matter. It is the energy that an object possesses due to its motion. The faster an object moves, the more kinetic energy it has.
In a crash, the kinetic energy of a moving object is converted into other forms of energy, such as heat, sound, and deformation of the object involved in the crash. The amount of kinetic energy involved in the crash depends on the mass and velocity of the objects involved.
To calculate the increase in kinetic energy of the pieces during an explosion, you can use the formula: Change in kinetic energy final kinetic energy - initial kinetic energy. This involves determining the initial and final velocities of the pieces and plugging them into the formula. The increase in kinetic energy will give you an idea of the energy released during the explosion.
Electrical energy plays a crucial role in determining whether a system's energy is in a state of potential or kinetic. When electrical energy is stored in a system, it is in a state of potential energy. This stored energy can be converted into kinetic energy when the electrical energy is released and used to power devices or perform work. In this way, electrical energy helps determine the balance between potential and kinetic energy within a system.
Kinetic energy is the energy of motion, and it plays a critical role in particle movement by determining the speed and direction of particles. Higher kinetic energy leads to faster movement of particles, while lower kinetic energy results in slower movement. Kinetic energy is a key factor in determining the behavior and interactions of particles in various systems.
The quantities involved in kinetic energy are mass and velocity. Kinetic energy is calculated as 1/2 the mass of an object multiplied by its velocity squared. The unit of measurement for kinetic energy is joules.
Well, since there is movement involved, and since water has a mass, it follows that there is kinetic energy.Well, since there is movement involved, and since water has a mass, it follows that there is kinetic energy.Well, since there is movement involved, and since water has a mass, it follows that there is kinetic energy.Well, since there is movement involved, and since water has a mass, it follows that there is kinetic energy.