Respuesta :
Answer:
Option A, C and D are correct statements.
Explanation:
Torque is the twisting effect of a force which causes an object to acquire angular acceleration.
The direction of the torque depends on the direction of the force on the axis. The SI unit for torque is the Newton-meter.
The net torque is the sum of the individual torques.
If the net torque on a rotatable object is zero then:
1. It will be in rotational equilibrium and the angular velocity of the body remains constant.
2. It will be in rotational equilibrium and not able to acquire angular acceleration. Thus, it will not be able to acquire angular velocity.
3. Angular momentum will be conserved.
If the forces on an object are balanced, the net force is zero.
If there net force on an object is zero, its speed and direction of motion do not change, including if it is at rest, the object will not accelerate and the velocity will remain constant.
By considering the basic fundamentals of Torque, the statements (A), (C) and (D) are correct.
The given problem is based on the concept and fundamentals of Torque. Torque is the twisting effect of a force which causes an object to acquire angular acceleration.
The direction of the torque depends on the direction of the force on the axis. The SI unit for torque is the Newton-meter. The net torque is the sum of the individual torques.
If the net torque on a rotatable object is zero then:
- It will be in rotational equilibrium and the angular velocity of the body remains constant.
- It will be in rotational equilibrium and not able to acquire angular acceleration. Thus, it will not be able to acquire angular velocity.
- Angular momentum will be conserved.
- If the forces on an object are balanced, the net force is zero.
- If there net force on an object is zero, its speed and direction of motion do not change, including if it is at rest, the object will not accelerate and the velocity will remain constant.
Thus, we can conclude that by considering the basic fundamentals of Torque, the statements (A), (C) and (D) are correct.
Learn more about the fundamentals of Torque here:
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