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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)

Manipur CohsemCouncil of Higher Secondary Education, Manipur (Higher Secondary 1st Year) 2022Subjective· 5mImportance★★★★★
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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 F1⃗+F2⃗+F3⃗=0\vec{F_1}+\vec{F_2}+\vec{F_3}=0 for equilibrium under three concurrent forces (4 marks):

Consider a body (or a particle) acted upon simultaneously by three concurrent forces F1⃗\vec{F_1}, F2⃗\vec{F_2}, and F3⃗\vec{F_3}, all passing through the same point.

By Newton's second law, the net force on a body produces an acceleration according to F⃗net=ma⃗\vec{F}_{net} = m\vec{a}, where F⃗net\vec{F}_{net} 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, a⃗=0\vec{a}=0) — the net force acting on it must be zero (again by Newton's second law, since m≠0m \neq 0, a⃗=0⇒F⃗net=0\vec{a}=0 \Rightarrow \vec{F}_{net}=0).

Here, since the only forces acting are F1⃗\vec{F_1}, F2⃗\vec{F_2}, and F3⃗\vec{F_3}:

F⃗net=F1⃗+F2⃗+F3⃗\vec{F}_{net} = \vec{F_1}+\vec{F_2}+\vec{F_3}

For equilibrium:

F1⃗+F2⃗+F3⃗=0\vec{F_1}+\vec{F_2}+\vec{F_3} = 0

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