Kinetic energy is the energy possessed by an object due to its motion. It is the energy that an object has because of its velocity. The formula for calculating kinetic energy is
[tex] \frac{1}{2} \times mass \times velocity^{2} [/tex]
where KE represents kinetic energy, mass is the mass of the object, and velocity is its speed. Kinetic energy is a scalar quantity and is measured in joules (J).
Kinetic energy refers to the energy possessed by an object due to its motion. In Hindi, it is known as "गतिशक्ति" (gatishakti). When an object is in motion, it has the ability to do work and can transfer its energy to other objects or undergo changes itself.
The amount of kinetic energy an object has depends on its mass and its velocity. The formula to calculate kinetic energy is KE = 1/2 mv^2, where KE represents kinetic energy, m represents the mass of the object, and v represents the velocity of the object.
For example, a moving car has kinetic energy because it possesses both mass and velocity. The faster the car moves, or the heavier it is, the greater its kinetic energy.
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Kinetic energy is the energy possessed by an object due to its motion. It is the energy that an object has because of its velocity. The formula for calculating kinetic energy is
[tex] \frac{1}{2} \times mass \times velocity^{2} [/tex]
where KE represents kinetic energy, mass is the mass of the object, and velocity is its speed. Kinetic energy is a scalar quantity and is measured in joules (J).
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Kinetic energy refers to the energy possessed by an object due to its motion. In Hindi, it is known as "गतिशक्ति" (gatishakti). When an object is in motion, it has the ability to do work and can transfer its energy to other objects or undergo changes itself.
The amount of kinetic energy an object has depends on its mass and its velocity. The formula to calculate kinetic energy is KE = 1/2 mv^2, where KE represents kinetic energy, m represents the mass of the object, and v represents the velocity of the object.
For example, a moving car has kinetic energy because it possesses both mass and velocity. The faster the car moves, or the heavier it is, the greater its kinetic energy.