Q2: The 1500-kg car has a velocity of 30 km/h up the 10-percent grade when the driver applies more power for 8 s to bring the car up to a speed of 60 km/h. Calculate the time average F of the total force tangent to the road exerted on the tires during the 8 s. Treat the car as a particle and neglect air resistance. [ Ans.: F = 3.03 N |

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter5: Energy
Section: Chapter Questions
Problem 84AP: The masses of the javelin, discus, and shot are 0.80 kg, 2.0 kg, and 7.2 kg, respectively, and...
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Q2: The 1500-kg car has a velocity of 30 km/h up
the 10-percent grade when the driver applies more
power for 8 s to bring the car up to a speed of 60
km/h. Calculate the time average F of the total force
tangent to the road exerted on the tires during the 8
s. Treat the car as a particle and neglect air
resistance.
[ Ans.: F = 3.03 N ]
10
Transcribed Image Text:Q2: The 1500-kg car has a velocity of 30 km/h up the 10-percent grade when the driver applies more power for 8 s to bring the car up to a speed of 60 km/h. Calculate the time average F of the total force tangent to the road exerted on the tires during the 8 s. Treat the car as a particle and neglect air resistance. [ Ans.: F = 3.03 N ] 10
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