The wheels of a moving car possessa)Potential energy onlyb)Kinetic en...
When an object, such as a solid sphere, travels along an axis, that object is usually experiencing both rotational kinetic energy and translation kinetic energy. Therefore the total kinetic energy of the object can be found by summing up the two types of kinetic energy.
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The wheels of a moving car possessa)Potential energy onlyb)Kinetic en...
The wheels of a moving car possess kinetic energy of translation and rotation both.
Explanation:
Kinetic energy: Kinetic energy is the energy possessed by an object due to its motion. It depends on the mass of the object and its velocity. The formula for kinetic energy is given by:
KE = 0.5 * m * v^2
where KE is the kinetic energy, m is the mass of the object, and v is the velocity.
Kinetic energy of translation: Kinetic energy of translation is the energy possessed by an object due to its linear motion. It is the energy associated with the movement of the object as a whole.
Kinetic energy of rotation: Kinetic energy of rotation is the energy possessed by an object due to its rotational motion. It is the energy associated with the spinning or rotating motion of the object.
Wheels of a moving car: The wheels of a car are responsible for both translation and rotation.
Translation: When a car moves forward, the wheels undergo linear motion or translation. This means that the wheels move along a straight line path without any rotation. The car's velocity is directly related to the linear motion of the wheels.
Rotation: The wheels of a car also rotate as the car moves forward. The rotation of the wheels is responsible for propelling the car forward. The rotational motion of the wheels is directly related to the car's velocity.
Kinetic energy of translation and rotation: Since the wheels of a moving car possess both translation and rotation, they possess kinetic energy of translation and rotation both. The kinetic energy of translation is associated with the linear motion of the wheels, while the kinetic energy of rotation is associated with the rotational motion of the wheels.
Therefore, the correct answer is option 'D' - the wheels of a moving car possess kinetic energy of translation and rotation both.