The main purpose of an air bag is to stop a passenger during a car accident in a greater amount of time than if the air bag were not present. For example, consider a 51 kg person traveling at 28 m/s (about 63 mph). Use impulse and momentum to calculate how many newtons of force would be reguired to stop the person in 0.035 s, 0.070 s, and 0.35 s. Note how the force changes with increased time. (Enter the magnitudes.) (a) How much force is needed to stop the person in 0.035 seconds? (b) How much force is needed to stop the person in 0.070 seconds? N (c) How much force is needed to stop the person in 0.35 seconds? N

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The main purpose of an air bag is to stop a passenger during a car accident in a greater amount of time than if the air bag were not present. For example, consider a 51 kg person traveling at
28 m/s (about 63 mph). Use impulse and momentum to calculate how many newtons of force would be required to stop the person in 0.035 s, 0.070 s, and 0.35 s. Note how the force changes with
increased time. (Enter the magnitudes.)
(a) How much force is needed to stop the person in 0.035 seconds?
(b) How much force is needed to stop the person in 0.070 seconds?
(c) How much force is needed to stop the person in 0.35 seconds?
Transcribed Image Text:The main purpose of an air bag is to stop a passenger during a car accident in a greater amount of time than if the air bag were not present. For example, consider a 51 kg person traveling at 28 m/s (about 63 mph). Use impulse and momentum to calculate how many newtons of force would be required to stop the person in 0.035 s, 0.070 s, and 0.35 s. Note how the force changes with increased time. (Enter the magnitudes.) (a) How much force is needed to stop the person in 0.035 seconds? (b) How much force is needed to stop the person in 0.070 seconds? (c) How much force is needed to stop the person in 0.35 seconds?
The main purpose of an air bag is to stop a passenger during a car accident in a greater amount of time than if the air bag were not present. For example, consider a 51 kg person traveling at
28 m/s (about 63 mph). Use impulse and momentum to calculate how many newtons of force would be required to stop the person in 0.035 s, 0.070 s, and 0.35 s. Note how the force changes with
increased time. (Enter the magnitudes.)
(a) How much force is needed to stop the person in 0.035 seconds?
(b) How much force is needed to stop the person in 0.070 seconds?
(c) How much force is needed to stop the person in 0.35 seconds?
Transcribed Image Text:The main purpose of an air bag is to stop a passenger during a car accident in a greater amount of time than if the air bag were not present. For example, consider a 51 kg person traveling at 28 m/s (about 63 mph). Use impulse and momentum to calculate how many newtons of force would be required to stop the person in 0.035 s, 0.070 s, and 0.35 s. Note how the force changes with increased time. (Enter the magnitudes.) (a) How much force is needed to stop the person in 0.035 seconds? (b) How much force is needed to stop the person in 0.070 seconds? (c) How much force is needed to stop the person in 0.35 seconds?
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