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A cyclist speeding at 18 km/h on a level...

A cyclist speeding at 18 km/h on a level road takes a sharp circular turn of radius 3 m without reducing the speed. The co-efficient of static friction between the tyres and the road is 0.1. Will the cyclist slip while taking the turn?

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On an unbanked road, frictional force alone can provide the centripetal force needed to keep the cyclist moving on a circular turn without slipping. If the speed is too large, or if the turn is too sharp (i.e. of too small a radius) or both, the frictional force is not sufficient to provide the necessary centripetal force, and the cyclist slips. The condition for the cyclist not to slip is given by Eq.
`v^2 lt= mu_s Rg`
Now `R = 3m , g = 9.8 ms^(-2) , mu_s = 0.1`. That is `mu_s Rg = 2.94 m^2 s^(-2) .v = 19 km//h = 5 ms^(-1) , i.e., v^2 = 25 m^2 s^(-2)` . The condition is not obeyed. The cyclist will slip while taking the circular turn.
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NCERT BANGLISH-LAW OF MOTION-EXERCISE (ADDITIONAL EXERCISE)
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  2. Figure shows the position-time graph of a body of mass 0.04 kg. Sugg...

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  3. Figure shows a man standing stationary with respect to a horizontal c...

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  4. A stone of mass m tied to the end of a string revolves in a vertical c...

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  5. A helicopter of mass 1000 kg rises with a vertical acceleration of 15 ...

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  6. A stream of water flowing horizontally with a speed of 15 m s^(-1) gu...

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  9. vA train runs along an unbanked circular track of radius 30 m at a spe...

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  10. A block of mass 25 kg is raised by a 50 kg man in two different ways a...

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  11. A monkey of mass 40 kg climbs on a rope. which can stand a maximum ten...

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  14. The rear side of a truck is open and a box of 40 kg mass is placed 5 m...

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  15. A disc revolves with a speed of 33/3 rev/min, and has a radius of 15...

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