During a brake test, the rear-engine car is stopped from an initial speed of 100 km/h in a distance of 50 m. If it is known that all four wheels contribute equally to the braking force, determine the braking force F at each wheel. Assume a constant deceleration for the 1500-kg car. U₁ = 100 km/h 50 m V₂ = 0

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Vectors
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During a brake test, the rear-engine car is stopped from an initial speed of 100 km/h in a
distance of 50 m. If it is known that all four wheels contribute equally to the braking force,
determine the braking force F at each wheel. Assume a constant deceleration for the
1500-kg car.
U₁= 100 km/h
50 m
V2 = 0
Transcribed Image Text:During a brake test, the rear-engine car is stopped from an initial speed of 100 km/h in a distance of 50 m. If it is known that all four wheels contribute equally to the braking force, determine the braking force F at each wheel. Assume a constant deceleration for the 1500-kg car. U₁= 100 km/h 50 m V2 = 0
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