(a) Calculate the force (in N) needed to bring a 1000 kg car to rest from a speed of 80.0 km/h in a distance of 125 m (a fairly typical distance for a non-panic stop). N (b) Suppose instead the car hits a concrete abutment at full speed and is brought to a stop in 2.00 m. Calculate the force exerted on the car and compare it with the force found in part (a). force in (b) = force in (a)
(a) Calculate the force (in N) needed to bring a 1000 kg car to rest from a speed of 80.0 km/h in a distance of 125 m (a fairly typical distance for a non-panic stop). N (b) Suppose instead the car hits a concrete abutment at full speed and is brought to a stop in 2.00 m. Calculate the force exerted on the car and compare it with the force found in part (a). force in (b) = force in (a)
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![(a) Calculate the force (in N) needed to bring a 1000 kg car to rest from a speed of 80.0 km/h in a distance of 125 m (a fairly typical
distance for a non-panic stop).
N
(b) Suppose instead the car hits a concrete abutment at full speed and is brought to a stop in 2.00 m. Calculate the force exerted on
the car and compare it with the force found in part (a).
force in (b) =
force in (a)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F023892dc-29dd-4ef1-8922-f607ba4e65ae%2F319f1f46-b3ee-49a0-bc76-92fd4815857d%2Fmhew0al_processed.png&w=3840&q=75)
Transcribed Image Text:(a) Calculate the force (in N) needed to bring a 1000 kg car to rest from a speed of 80.0 km/h in a distance of 125 m (a fairly typical
distance for a non-panic stop).
N
(b) Suppose instead the car hits a concrete abutment at full speed and is brought to a stop in 2.00 m. Calculate the force exerted on
the car and compare it with the force found in part (a).
force in (b) =
force in (a)
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