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Truck brakes can fail if they get too hot. In some mountainous areas, ramps of loose gravel are constructed to stop runaway trucks that have lost their brakes. The combination of a slight upward slope and a large coefficient of rolling resistance as the truck tires sink into the gravel brings the truck safely to a halt. Suppose a gravel ramp slopes upward at 6.0oand the coefficient of rolling friction is 0.40. Use work and energy to find the length of a ramp that will stop a 15,000kg truck that enters the ramp at 35m/s≈75mph.

Short Answer

Expert verified

The distance a 15000kgtruck rolls on the gravel surface before the ramp stops it is124.29m.

Step by step solution

01

Given information

A gravel ramp goes upward at 6.0oand the coefficient of rolling friction is0.4. The truck enters the ramp at35m/s.

02

Explanation

The frictional force acting on a sliding mass m on a surface with a coefficient of kinetic friction μisμmgh.

The KE of the truck before entering the ramp is

KE=12mv2

This energy is transferred to the mass and used in doing work against the friction force. Work done by friction + gain in PEis

W=Force×distance+gaininPEW=μmgd+mgh=KEμmghcos6od+mgh=12mv2μmgcos6od+mgdsin6o=12mv2d=v22gμcos6o+sin6od=3522×9.810.4cos6o+sin6od=124.29

The energy is conserved. This energy of the truck is used up in doing work against the friction force and gaining PE.Thus, the truck finally comes to a halt.

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