Q.What are concurrent forces ? Prove that under the action of three concurrent forces F1, F2 and F3, a body will be in equilibrium when F1 + F2 + F3 = 0. (1+4=5) OR What is centripetal force ? Derive the expression for maximum speed of circular motion of a car on a level road. (1+4=5)
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Start your 14-day free trial to unlock the full solution →Concurrent forces act through one common point; a body acted on by three such forces stays in equilibrium precisely when the vector sum of all three forces is zero, since a nonzero net force would produce acceleration by Newton's second law.
Concurrent forces (1 mark): Concurrent forces are two or more forces whose lines of action pass through a single common point at the same time. Even though the forces act at the same point, they can have different magnitudes and different directions.
Proof that for equilibrium under three concurrent forces (4 marks):
Consider a body (or a particle) acted upon simultaneously by three concurrent forces , , and , all passing through the same point.
By Newton's second law, the net force on a body produces an acceleration according to , where is the vector sum of all forces acting on the body.
For the body to be in equilibrium — meaning it remains at rest, or continues moving with constant velocity (no acceleration, ) — the net force acting on it must be zero (again by Newton's second law, since , ).
Here, since the only forces acting are , , and :
For equilibrium:
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