The two blocks are connected to the end of a rope whose mass passes over a reel with a moment of inertia I and a radius of 0.25m. Find the tension forces in the rope and the moment of inertia of the pulley according to the movement of the frictionless system with an acceleration of 2 m / s2 in the direction shown.
Rigid Body
A rigid body is an object which does not change its shape or undergo any significant deformation due to an external force or movement. Mathematically speaking, the distance between any two points inside the body doesn't change in any situation.
Rigid Body Dynamics
Rigid bodies are defined as inelastic shapes with negligible deformation, giving them an unchanging center of mass. It is also generally assumed that the mass of a rigid body is uniformly distributed. This property of rigid bodies comes in handy when we deal with concepts like momentum, angular momentum, force and torque. The study of these properties – viz., force, torque, momentum, and angular momentum – of a rigid body, is collectively known as rigid body dynamics (RBD).
The two blocks are connected to the end of a rope whose mass passes over a reel with a moment of inertia I and a radius of 0.25m. Find the tension forces in the rope and the moment of inertia of the pulley according to the movement of the frictionless system with an acceleration of 2 m / s2 in the direction shown.
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