For protection, the barrel barrier is placed in front of the bridge pier. If the relation between the force and deflection of the barrier is F = (90(103)x1/2) N, where x is in m, determine the car’s maximum penetration in the barrier. The car has a weight of 9000 N and it is traveling with a speed of 24 m/s just before it hits the barrier
For protection, the barrel barrier is placed in front of the bridge pier. If the relation between the force and deflection of the barrier is F = (90(103)x1/2) N, where x is in m, determine the car’s maximum penetration in the barrier. The car has a weight of 9000 N and it is traveling with a speed of 24 m/s just before it hits the barrier
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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For protection, the barrel barrier is placed in front of the bridge pier. If the relation between the force and deflection of the barrier is F = (90(103)x1/2) N, where x is in m, determine the car’s maximum penetration in the barrier. The car has a weight of 9000 N and it is traveling with a speed of 24 m/s just before it hits the barrier.
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