A passenger car as shown in Figure Q1 weighting 17850 N (10000 N on the front...
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A passenger car as shown in Figure Q1 weighting 17850 N (10000 N on the front axle and 7850 N on the rear axle) performing a full stop from 120 km/h on a level surface with a brake application that develops a steady brake force of 6500 N. The wheelbase of the car is 2.55 m and the center of gravity height is 0.55 m. Assume no towing trailer at vehicle rear and gravity acceleration is 9.81 m/s². (a) (b) (c) mg 4 N₁ N₁ Figure Q1: Passenger car on a level surface. Fa Determine the distance of front axle and rear axle from the center of gravity for the vehicle when sits statically on level ground. Determine the deceleration, stopping distance and time to stop. [6 marks] Determine the front and rear axle loads that is necessary to hold the vehicle as the vehicle travel on a slope of 12%. [3 marks] A passenger car as shown in Figure Q1 weighting 17850 N (10000 N on the front axle and 7850 N on the rear axle) performing a full stop from 120 km/h on a level surface with a brake application that develops a steady brake force of 6500 N. The wheelbase of the car is 2.55 m and the center of gravity height is 0.55 m. Assume no towing trailer at vehicle rear and gravity acceleration is 9.81 m/s². (a) (b) (c) mg 4 N₁ N₁ Figure Q1: Passenger car on a level surface. Fa Determine the distance of front axle and rear axle from the center of gravity for the vehicle when sits statically on level ground. Determine the deceleration, stopping distance and time to stop. [6 marks] Determine the front and rear axle loads that is necessary to hold the vehicle as the vehicle travel on a slope of 12%. [3 marks]
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Related Book For
Fundamentals of Physics
ISBN: 978-1118230725
10th Extended edition
Authors: Jearl Walker, Halliday Resnick
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