The four-wheel-drive all-terrain vehicle has a mass of 300 kg with centre of mass G. If all four wheels (front and rear) are observed to spin momentarily as the driver attempts to go forward, vehicle reaches speed of 50 km/h after 60 m. At first determine the acceleration of this vehicle? Then if coefficient of friction between the tires and the ground is 0.40, determine the combined normal force at the pair of front tires. 848 805 mm 440 mm Figure 11 500 mm

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The four-wheel-drive all-terrain vehicle has a mass of 300 kg with centre of mass G. If
all four wheels (front and rear) are observed to spin momentarily as the driver attempts
to go forward, vehicle reaches speed of 50 km/h after 60 m. At first determine the
acceleration of this vehicle? Then if coefficient of friction between the tires and the
ground is 0.40, determine the combined normal force at the pair of front tires.
805
mm
440
mm
Figure 11
500
mm
Transcribed Image Text:The four-wheel-drive all-terrain vehicle has a mass of 300 kg with centre of mass G. If all four wheels (front and rear) are observed to spin momentarily as the driver attempts to go forward, vehicle reaches speed of 50 km/h after 60 m. At first determine the acceleration of this vehicle? Then if coefficient of friction between the tires and the ground is 0.40, determine the combined normal force at the pair of front tires. 805 mm 440 mm Figure 11 500 mm
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