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The object will undergo rotational acceleration: it will either rotate faster or slower than previously.

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When is an object in rotational equilibrium?

An object is in rotational equilibrium when the net torque acting on it is zero. This occurs when the clockwise torques are balanced by counterclockwise torques, resulting in no rotational acceleration.


What is the net torque acting on an object in rotational equilibrium?

The net torque acting on an object in rotational equilibrium is zero. This means that the sum of all torques acting on the object is balanced, causing it to remain at rest or maintain a constant rotational speed.


What is mean sum of all torque on the object must be zero in cindition of equilibrrium?

In a condition of equilibrium, the sum of all torques acting on an object must be zero because torque is responsible for rotation. If the total torque is not balanced (i.e., not zero), the object will start rotating. By ensuring that the sum of all torques is zero, we guarantee that the object stays in a stable, balanced position without any rotational movement.


Balanced forces acting on an object do not change the object's what?

Balanced forces acting on an object do not change the object's position.


What is static equalibrium?

Static equilibrium refers to the state where an object is at rest and experiences no net force or torque. In other words, the object is balanced and not moving. Static equilibrium can occur when the sum of all external forces acting on the object is zero, and the sum of all torques acting on the object is zero.


What happens to an object when forces acting on an object are balanced?

Balanced force -> Zero net force -> Zero acceleration (stays at rest or constant velocity)


What happens if the forces acting on a object are balanced?

If the forces acting on an object are balanced, it means that the net force on the object is zero. In this case, the object will either remain at rest if it was initially at rest, or it will continue to move with a constant velocity if it was already in motion.


What is the equilibrium rule of torques?

The equilibrium rule of torques states that the sum of the torques acting on an object in rotational equilibrium must be zero. This means that the clockwise torques must balance out the counterclockwise torques for the object to remain stationary. Mathematically, this is expressed as ∑τ = 0, where ∑τ represents the sum of the torques.


Is this true or false balanced forces acting on an object will change the objects velocity?

False. Balanced forces acting on an object will not change the object's velocity. When forces are balanced, there is no change in the object's velocity as there is no net force acting on the object.


What are the conditions for the forces to be balanced?

Forces are balanced when the net force acting on an object is zero. This occurs when the forces are equal in magnitude and opposite in direction. When forces are balanced, the object will either remain stationary or move at a constant velocity.


Can an obeject be in equilibrium if the only torques acting on it produce clickwise rotation?

No, for an object to be in equilibrium, the net torque acting on it must be zero. If all torques are producing clockwise rotation, there will be a net torque causing the object to rotate in that direction, not in equilibrium.


What is net torque in Physics?

Net torque is the overall rotational force acting on an object, taking into account all individual torques applied to it. It is calculated by summing the torques acting clockwise and counterclockwise around a specific axis. Net torque determines the object's rotational motion and can result in angular acceleration or deceleration.