Simulation · Physics · Class 11
Friction is not always μN
From the lesson Solving problems in mechanics in Laws of Motion. Change the values and watch what happens.
The idea behind it
NCERT § "Solving Problems in Mechanics"
- Pick the body (or system) and draw a free-body diagram showing every force acting on it, and only those forces.
- Choose axes, usually along and perpendicular to the direction of acceleration, and write the second law separately for each axis.
- For connected bodies, the string condition gives the same magnitude of acceleration for both bodies and, for a light string, the same tension at both ends.
- Treating connected bodies as one system gives the common acceleration quickly, because internal tensions cancel; a separate free-body diagram is then needed to find the tension.
- For two masses m₁ > m₂ hanging over a light frictionless pulley, a = (m₁ − m₂)g/(m₁ + m₂) and T = 2m₁m₂g/(m₁ + m₂).
- With friction on connected bodies, first check whether the driving force exceeds limiting static friction; if not, the system stays at rest and friction equals the driving force.
- When a force is applied at an angle to a floor, its vertical component changes the normal reaction and therefore the friction.
More simulations in Laws of Motion
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